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        {
            "id": 5633,
            "url": "https://svs.gsfc.nasa.gov/5633/",
            "result_type": "Visualization",
            "release_date": "2026-04-06T10:30:00-04:00",
            "title": "Simulating the Artemis II Lunar Flyby on April 6, 2026",
            "description": "This visualization simulates what the crew of Artemis II will see out the window on the day of their closest approach to the Moon on April 6, 2026. It covers the period of their scheduled science observations that begins at 18:45 UTC and spans seven hours, flying the virtual camera on the actual post-TLI trajectory that swings the spacecraft around the Moon's far side.",
            "hits": 33003
        },
        {
            "id": 5632,
            "url": "https://svs.gsfc.nasa.gov/5632/",
            "result_type": "Visualization",
            "release_date": "2026-04-06T05:00:00-04:00",
            "title": "Artemis II mission trajectory",
            "description": "Artemis II launches four astronauts aboard NASA’s Orion spacecraft into Earth orbit, sending them on a loop around the Moon before returning safely to Earth. The mission follows a free-return trajectory that uses the gravity of the Earth and Moon to naturally guide the crew home. This visualization shows the mission trajectory based on flight-derived ephemeris data.",
            "hits": 160451
        },
        {
            "id": 31383,
            "url": "https://svs.gsfc.nasa.gov/31383/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-04-01T12:00:00-04:00",
            "title": "Water Droplet Science with Astronaut Don Pettit on the ISS",
            "description": "NASA astronaut Don Pettit demonstrates electrostatic forces using charged water droplets and a knitting needle made of Teflon.",
            "hits": 451
        },
        {
            "id": 31381,
            "url": "https://svs.gsfc.nasa.gov/31381/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-03-31T11:51:59-04:00",
            "title": "NASA’S PUNCH Images Eruptions from the Sun",
            "description": "This video shows several coronal mass ejections (CMEs) erupting from the Sun’s surface from Oct. 21 to Nov. 12, 2025.",
            "hits": 1084
        },
        {
            "id": 14948,
            "url": "https://svs.gsfc.nasa.gov/14948/",
            "result_type": "Produced Video",
            "release_date": "2026-03-31T09:00:00-04:00",
            "title": "Integrating The Nancy Grace Roman Space Telescope's Two Halves",
            "description": "NASA’s Nancy Grace Roman Space Telescope team has successfully integrated the mission’s telescope and two instruments onto the instrument carrier, marking the completion of the Roman payload. Now the team at NASA’s Goddard Space Flight Center in Greenbelt, Maryland, will begin joining the payload to the spacecraft.The telescope and instruments were mounted to Roman’s instrument carrier and precisely aligned in the largest clean room at Goddard, where the observatory is being assembled. Now, the whole assembly is being attached to the Roman spacecraft, which will deliver the observatory to its orbit and enable it to function once there.In the footage below technicians carefully lift the outer portion of the telescope, called the OSD or Outer Barrel, SASS, Deployable Aperature Cover, and place it over the internal half. Long guard rails keep the two halves in perfect position. The solar panels open shortly after the two havles joined, marking a nearly deployed and fully assembled observatory. || ",
            "hits": 327
        },
        {
            "id": 31379,
            "url": "https://svs.gsfc.nasa.gov/31379/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-03-30T12:00:00-04:00",
            "title": "Astronauts Swab the Exterior of Station for Microbial Life",
            "description": "ISS External Microorganisms collects samples from outside the International Space Station. Samples are collected near life support system vents to examine whether a spacecraft releases microorganisms and, if so, how many and how far they may travel. Results could inform preparations for future human exploration missions to the Moon and Mars.",
            "hits": 249
        },
        {
            "id": 14934,
            "url": "https://svs.gsfc.nasa.gov/14934/",
            "result_type": "Produced Video",
            "release_date": "2026-03-26T16:00:00-04:00",
            "title": "NASA Interview Opportunity: Moonbound! NASA’s Artemis II Mission Days From Launch — First Crewed Journey Around the Moon in More Than 50 Years!",
            "description": "Click here for the Artemis II PRESS KIT. || ARTEMIS_II_BANNER_english2.jpeg (1800x720) [342.6 KB] || ARTEMIS_II_BANNER_english2_print.jpg (1024x409) [139.2 KB] || ARTEMIS_II_BANNER_english2_searchweb.png (320x180) [86.2 KB] || ARTEMIS_II_BANNER_english2_thm.png (80x40) [7.7 KB] || ",
            "hits": 4162
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        {
            "id": 14968,
            "url": "https://svs.gsfc.nasa.gov/14968/",
            "result_type": "Produced Video",
            "release_date": "2026-03-25T12:00:00-04:00",
            "title": "XRISM Clocks Hot Wind of Galaxy M82",
            "description": "The Resolve instrument aboard the XRISM (X-ray Imaging and Spectroscopy Mission) spacecraft captured data revealing the velocity of the hot wind at the center of starburst galaxy M82. The energy range of iron emission lines show that the gas moves around 2 million miles (about 3 million kilometers) per hour. Inset: XRISM Xtend instrument’s image of M82.Credit: NASA’s Goddard Space Flight Center, JAXA/NASA, XRISM Collaboration et al. 2026Alt text: Spectrum and image of galaxy M82Image description: This image is labeled, “XRISM Resolve Measures the Hot Wind of Starburst Galaxy M82.” It shows a graph where the bottom is labeled, “X-ray energy (keV),” with a range from 2 to 9. The left side is labeled “X-ray brightness.” A squiggly white line starts near the bottom of the left side. Several peaks are labeled, including silicon, sulfur, argon, and calcium. Four peaks are identified as iron. In the upper right corner, a small inset shows an image that looks like a purple pansy with a yellow center. || v3_XRISM_Resolve_M82.jpg (4412x2993) [2.6 MB] || v3_XRISM_Resolve_M82_searchweb.png (320x180) [46.6 KB] || v3_XRISM_Resolve_M82_thm.png (80x40) [4.6 KB] || ",
            "hits": 729
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        {
            "id": 5627,
            "url": "https://svs.gsfc.nasa.gov/5627/",
            "result_type": "Visualization",
            "release_date": "2026-03-19T10:00:00-04:00",
            "title": "Global Navigation Satellite System (GNSS) Fleet",
            "description": "A view of the Global Navigation Satellite System (GNSS) satellite fleet, color-coded by country.",
            "hits": 599
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        {
            "id": 5622,
            "url": "https://svs.gsfc.nasa.gov/5622/",
            "result_type": "Visualization",
            "release_date": "2026-03-05T18:00:00-05:00",
            "title": "Artemis II: Sending Humans Beyond the Magnetosphere",
            "description": "Artemis II will be the first time in over 50 years that humans venture beyond Earth's protective magnetic shield, called the magnetosphere. This visualization captures the spacecraft's journey as the Orion spacecraft leaves the safety of the magnetosphere (shown here in green) and travels into open space, where it will encounter the solar wind streaming from the Sun.",
            "hits": 3805
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        {
            "id": 40550,
            "url": "https://svs.gsfc.nasa.gov/gallery/voyager/",
            "result_type": "Gallery",
            "release_date": "2026-03-04T00:00:00-05:00",
            "title": "Voyager",
            "description": "Launched in 1977, the twin Voyager spacecraft are NASA’s longest operating and most distant spacecraft. Hurtling through space at over 38,000 miles per hour, Voyager 1 and 2 were the first confirmed human-made objects to cross the threshold into interstellar space. After completing an in-depth reconnaissance of the outer planets, the Voyager spacecraft departed the heliosphere, the protective bubble of particles and magnetic fields generated by the Sun, in two separate directions and are now exploring the edges of interstellar space. \n\nLearn more: https://science.nasa.gov/mission/voyager/",
            "hits": 624
        },
        {
            "id": 31347,
            "url": "https://svs.gsfc.nasa.gov/31347/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-03-03T18:59:59-05:00",
            "title": "Astronaut Don Pettit’s Photos from Space",
            "description": "hyperwall hwshows for photos from https://www.nasa.gov/gallery/astronaut-don-pettits-photos-from-space/",
            "hits": 1055
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            "id": 40548,
            "url": "https://svs.gsfc.nasa.gov/gallery/solarand-heliospheric-observatory-soho/",
            "result_type": "Gallery",
            "release_date": "2026-03-03T00:00:00-05:00",
            "title": "SOHO – Solar and Heliospheric Observatory",
            "description": "Launched in December 1995, the Solar and Heliospheric Observatory (SOHO) is a joint mission between NASA and ESA (European Space Agency) designed to study the Sun inside out. Though its mission was originally scheduled to last until 1998, SOHO continues to collect observations about the Sun’s interior, the solar atmosphere, and the constant stream of solar particles known as the solar wind, adding to scientists' understanding of our closest star and making many new discoveries, including finding more than 5,000 comets.\n\nLearn more: https://science.nasa.gov/mission/soho/",
            "hits": 487
        },
        {
            "id": 5621,
            "url": "https://svs.gsfc.nasa.gov/5621/",
            "result_type": "Visualization",
            "release_date": "2026-03-02T08:00:00-05:00",
            "title": "Committee on Earth Observation Satellites (CEOS) - Fleet - 2026",
            "description": "A global view of the CEOS fleet of satellites active as of January 2026",
            "hits": 633
        },
        {
            "id": 40549,
            "url": "https://svs.gsfc.nasa.gov/gallery/interstellar-boundary-explorer-ibex/",
            "result_type": "Gallery",
            "release_date": "2026-03-02T00:00:00-05:00",
            "title": "IBEX – Interstellar Boundary Explorer",
            "description": "The Interstellar Boundary Explorer (IBEX) is a NASA spacecraft studying how our heliosphere — the protective bubble surrounding the Sun and planets that is inflated by a constant stream of solar particles — interacts with interstellar space. IBEX created the first maps showing the interactions at that border, and how they change over time due to variations in the Sun’s activity. IBEX studies the heliosphere’s boundaries by measuring a type of uncharged particle called energetic neutral atoms.\n\nIBEX launched on Oct. 19, 2008, from the Ronald Reagan Ballistic Missile Defense Test Site, in the Republic of the Marshall Islands. \n\nLearn more: https://science.nasa.gov/mission/ibex/",
            "hits": 220
        },
        {
            "id": 14981,
            "url": "https://svs.gsfc.nasa.gov/14981/",
            "result_type": "Produced Video",
            "release_date": "2026-02-28T00:00:00-05:00",
            "title": "Behind the March 3rd Total Lunar Eclipse",
            "description": "Music: \"Now or Never,\" \"Trypophobia,\" Universal Production MusicComplete transcript available. || March3_Eclipse_Short_thumb.png (1080x1920) [1.8 MB] || March3_Eclipse_Short_thumb_print.jpg (1024x1820) [266.1 KB] || March3_Eclipse_Short_thumb_searchweb.png (320x180) [84.1 KB] || March3_Eclipse_Short_thumb_thm.png (80x40) [6.5 KB] || March3_Eclipse_Short_IG_LRO.mp4 (1080x1920) [195.9 MB] || March3_Eclipse_Short_YT_LRO.mp4 (1080x1920) [195.1 MB] || March3_Eclipse.en_US.srt [7.9 KB] || March3_Eclipse.en_US.vtt [7.4 KB] || ",
            "hits": 1417
        },
        {
            "id": 14972,
            "url": "https://svs.gsfc.nasa.gov/14972/",
            "result_type": "Produced Video",
            "release_date": "2026-02-27T12:00:00-05:00",
            "title": "See the Sun's Active Region: The Source of the Early-February Flares",
            "description": "This video condenses nine days of solar activity into 12 minutes, playing 1,080 times faster than real time. NASA's Goddard Space Flight Center/SDO. Music Credit: “Atomic Drift,” “Echoes of the Unknown,” and “Particle Reverie” from the album Molecular Echoes. Written and produced by Lars Leonhard.Watch this video on the NASA Goddard YouTube channel.Complete transcript available. || Active_Region-STILL.jpg (1920x1080) [239.1 KB] || Active_Region-STILL_searchweb.png (320x180) [72.9 KB] || Active_Region-STILL_thm.png (80x40) [5.9 KB] || 14972ActiveRegionLongCaptions.en_US.srt [162 bytes] || 14972ActiveRegionLongCaptions.en_US.vtt [164 bytes] || 14972_Active_Region_Long_Good.mp4 (1920x1080) [1.3 GB] || 14972_Active_Region_Long_Better.mp4 (1920x1080) [2.1 GB] || 14972_Active_Region_Long_YouTube.mp4 (1920x1080) [4.2 GB] || 14972_Active_Region_Long_ProRes_1920x1080_2997.mov (1920x1080) [11.5 GB] || ",
            "hits": 247
        },
        {
            "id": 31366,
            "url": "https://svs.gsfc.nasa.gov/31366/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-02-27T12:00:00-05:00",
            "title": "NASA Science Drives Exploration",
            "description": "Animations based on the 2026 NASA Science Calendar graphics",
            "hits": 374
        },
        {
            "id": 31368,
            "url": "https://svs.gsfc.nasa.gov/31368/",
            "result_type": "Hyperwall Visual",
            "release_date": "2026-02-27T12:00:00-05:00",
            "title": "Artemis II Science",
            "description": "Orion capsule and Artemis II science goals",
            "hits": 1969
        },
        {
            "id": 40544,
            "url": "https://svs.gsfc.nasa.gov/gallery/hinode/",
            "result_type": "Gallery",
            "release_date": "2026-02-27T00:00:00-05:00",
            "title": "Hinode (Solar-B)",
            "description": "Hinode (Solar-B) is an international mission, led by the Japan Aerospace Exploration Agency (JAXA), to study the Sun. Hinode explores the magnetic fields of the Sun, from tracking their strength and direction on the solar surface, or photosphere, to decoding their role in heating and powering eruptions in the Sun’s outer atmosphere, or corona, to driving the constant outflow from the Sun, the solar wind. \n\nThe mission launched on Sept. 23, 2006, from Uchinoura Space Center in Japan aboard a JAXA M-V rocket.\n\nLearn more: https://science.nasa.gov/mission/hinode/",
            "hits": 48
        },
        {
            "id": 5617,
            "url": "https://svs.gsfc.nasa.gov/5617/",
            "result_type": "Visualization",
            "release_date": "2026-02-26T10:30:00-05:00",
            "title": "ESCAPADE Visits the Distant Magnetotail",
            "description": "Launched on Nov. 13, 2025, NASA’s ESCAPADE (Escape and Plasma Acceleration and Dynamics Explorers) mission will use two identical spacecraft to investigate how the solar wind interacts with Mars’ magnetic environment and how this interaction drives the planet’s atmospheric escape.",
            "hits": 369
        },
        {
            "id": 14970,
            "url": "https://svs.gsfc.nasa.gov/14970/",
            "result_type": "Animation",
            "release_date": "2026-02-20T12:00:00-05:00",
            "title": "Roman Space Telescope Assembly Animation",
            "description": "This animation shows key systems assembling to form NASA's Nancy Grace Roman Space Telescope. It starts with the spacecraft bus and then adds the instrument carrier. Then the Coronagraph Instrument joins, followed by the mirror assembly and the Wide Field Instrument, completing the main half of the observatory. The outer portion, which contains the outer barrel assembly, solar array Sun shield, and deployable aperture cover, slides over the exposed mirror to complete the full observatory. This animation includes a version with a transparent alpha channel. || Roman_Assembly_Still.jpg (3840x2160) [377.3 KB] || Roman_Assembly_Still_searchweb.png (320x180) [18.8 KB] || Roman_Assembly_Still_thm.png (80x40) [2.3 KB] || Roman_Asssembly_1080.mp4 (1920x1080) [61.6 MB] || Roman_Asssembly_4k.mp4 (3840x2160) [308.1 MB] || Roman_Asssembly_ProRes_3840x2160_60.mov (3840x2160) [3.7 GB] || Roman_Asssembly_ProRes4444Alpha_3840x2160_60.mov (3840x2160) [7.1 GB] || ",
            "hits": 164
        },
        {
            "id": 14967,
            "url": "https://svs.gsfc.nasa.gov/14967/",
            "result_type": "Animation",
            "release_date": "2026-02-20T10:00:00-05:00",
            "title": "NASA's Roman Space Telescope Parts and Assembly",
            "description": "The Roman observatory is slated to launch no later than May 2027, with the team aiming for as early as fall 2026. The mission will revolutionize our understanding of the universe with its deep, crisp, sweeping views of space.More than a thousand technicians and engineers assembled Roman from millions of individual components. Many parts were built and tested simultaneously to save time. Now that the observatory is assembled, it will undergo a spate of testing prior to shipping to NASA's Kennedy Space Center in Florida in summer 2026.Learn more at Building Roman. Music credit: “Unseen,” by David Husband [PRS], Universal Production MusicWatch this video on the NASA Goddard YouTube channel. || YTframe_RomanAssembly.jpg (1280x720) [151.7 KB] || YTframe_RomanAssembly_searchweb.png (320x180) [55.4 KB] || YTframe_RomanAssembly_thm.png (80x40) [8.3 KB] || 14967_Roman_Assembly_1080.mp4 (1920x1080) [138.9 MB] || 14967RomanAssemblyCaptions.en_US.srt [1.9 KB] || 14967RomanAssemblyCaptions.en_US.vtt [1.8 KB] || 14967_Roman_Assembly_4k_Good.mp4 (3840x2160) [290.7 MB] || 14967_Roman_Assembly_4k_Best.mp4 (3840x2160) [368.4 MB] || 14967_Roman_Assembly_4k_YT.mp4 (3840x2160) [722.6 MB] || 14967_Roman_Assembly_ProRes_3840x2160_30.mov (3840x2160) [6.1 GB] || ",
            "hits": 415
        },
        {
            "id": 14971,
            "url": "https://svs.gsfc.nasa.gov/14971/",
            "result_type": "Animation",
            "release_date": "2026-02-20T09:00:00-05:00",
            "title": "2026 Roman Space Telescope 360 Animation",
            "description": "A 360-degree spin animation of NASA's Nancy Grace Roman Space Telescope. This version showcases the final design and configuration. It includes a version with a transparent background. || Roman2025_360Spin_Still.jpg (3840x2160) [487.8 KB] || Roman2025_360Spin_Still_searchweb.png (320x180) [34.3 KB] || Roman2025_360Spin_Still_thm.png (80x40) [3.8 KB] || Roman2025_360Spin_1080.mp4 (1920x1080) [47.5 MB] || Roman2025_360Spin_4k.mp4 (3840x2160) [236.7 MB] || Roman2025_360Spin_ProRes4444Alpha_3840x2160_30.mov (3840x2160) [4.5 GB] || ",
            "hits": 414
        },
        {
            "id": 5615,
            "url": "https://svs.gsfc.nasa.gov/5615/",
            "result_type": "Visualization",
            "release_date": "2026-02-17T09:00:00-05:00",
            "title": "NISAR satellite orbit",
            "description": "NISAR satellite orbit with ground data swath",
            "hits": 403
        },
        {
            "id": 14966,
            "url": "https://svs.gsfc.nasa.gov/14966/",
            "result_type": "Produced Video",
            "release_date": "2026-02-14T00:00:00-05:00",
            "title": "SPHEREx Spacecraft and Observing Animations",
            "description": "SPHEREx is a small, highly-capable astronomy satellite mission that will map out the entire sky in 102 colors of infrared light from its vantage point in a low-Earth orbit. The spacecraft bus is powered by Sun-facing, rectangular solar panels.The white, conical Sun shield keeps the inner telescope components at a cool temperature that enables the detectors to operate with high sensitivity. The Sun shields are faded out at the end of the sequence to provide an unobstructed view of the telescope components.Credit: NASA/JPL-CaltechWatch this video on the JPLraw YouTube channel.JPL Page || SPHEREx_SurveyAnimationShot1_Stlll.jpg (3840x2160) [658.9 KB] || SPHEREx_SurveyAnimationShot1_Stlll_searchweb.png (320x180) [63.1 KB] || SPHEREx_SurveyAnimationShot1_Stlll_thm.png (80x40) [4.5 KB] || SPHEREx_SpacecraftAnimation_01_R27_TwoTurns_SpaceBackg_ProRes422.mov (1920x1080) [703.6 MB] || SPHEREx_Shot1_Caption.en_US.srt [49 bytes] || SPHEREx_Shot1_Caption.en_US.vtt [59 bytes] || SPHEREx_SpacecraftAnimation_01_R27_TwoTurns_SpaceBackg_4K.mp4 (3840x2160) [154.7 MB] || SPHEREx_SpacecraftAnimation_01_R27_TwoTurns_SpaceBackg_ProRes422_4K.mov (3840x2160) [2.0 GB] || ",
            "hits": 212
        },
        {
            "id": 5610,
            "url": "https://svs.gsfc.nasa.gov/5610/",
            "result_type": "Visualization",
            "release_date": "2026-01-27T17:00:00-05:00",
            "title": "Nominal (reference) Artemis II mission trajectory",
            "description": "Artemis II will launch four astronauts aboard NASA’s Orion spacecraft into Earth orbit, then send them on a loop around the Moon before returning safely to Earth. The mission follows a free-return trajectory that uses the gravity of the Earth and Moon to naturally guide the crew home. This visualization shows a nominal trajectory for Artemis II. The actual trajectory may vary slightly depending on the final launch timing.",
            "hits": 18585
        },
        {
            "id": 14957,
            "url": "https://svs.gsfc.nasa.gov/14957/",
            "result_type": "Produced Video",
            "release_date": "2026-01-27T10:00:00-05:00",
            "title": "IMAP Arrives at L1",
            "description": "NASA’s IMAP (Interstellar Mapping and Acceleration Probe) reached its destination at Lagrange point 1, or L1, approximately 1 million miles from Earth toward the Sun on Jan. 10, 2026.The mission’s operations team sent commands to the spacecraft on the morning of Jan. 9 to begin trajectory maneuvers to enter orbit at L1. Early on the morning of Jan. 10, the team confirmed the spacecraft had successfully entered its final L1 orbit, where it will stay for the duration of its mission.From L1, IMAP will explore and map the very boundaries of our heliosphere — the protective bubble created by the solar wind that encapsulates our entire solar system — and study how the heliosphere interacts with the local galactic neighborhood beyond.Learn more about the milestone: https://science.nasa.gov/blogs/imap/2026/01/12/nasas-imap-mission-reaches-its-destination/ || ",
            "hits": 403
        },
        {
            "id": 14955,
            "url": "https://svs.gsfc.nasa.gov/14955/",
            "result_type": "Produced Video",
            "release_date": "2026-01-27T09:00:00-05:00",
            "title": "NASA Tests LISA Development Units",
            "description": "A prototype charge management device for the future LISA (Laser Interferometer Space Antenna) mission sits on a lab bench at NASA’s Goddard Space Flight Center in Greenbelt, Maryland. The device will reduce the buildup of electric charge on the gold-platinum test masses that float freely inside each of the three LISA spacecraft. The University of Florida in Gainesville and Fibertek Inc. in McNair, Virginia, are developing the device. Credit: NASA/Dennis HenryAlt text: An instrument rests on a lab bench.Image description: A silver box with red and black connector caps on one side rests on a white lab bench with a blue mat on top. Three black cables connect to the box and another yellow cable curls around it. || GSFC_20250602_LISA_006584.jpg (8098x5399) [11.3 MB] || ",
            "hits": 281
        },
        {
            "id": 14956,
            "url": "https://svs.gsfc.nasa.gov/14956/",
            "result_type": "Produced Video",
            "release_date": "2026-01-26T16:00:00-05:00",
            "title": "Space Weather Effects Animations",
            "description": "Solar flares, coronal mass ejections, solar particle events, and the solar wind form the recipe for space weather that affects life on Earth and astronauts in space. A farmer stops their planting operations due to poor GPS signal for their autonomous tractor. A power grid manager changes the configuration of their network to ensure a blackout doesn’t occur due to voltage instability. A pilot switches to back-up communication equipment due to loss of high-frequency radio. A commercial internet company providing service to the military must change the orbit of their spacecraft to avoid a collision due to increased atmospheric drag.These are a few examples of the ways the Sun influences our everyday lives. This is what we define as space weather – the conditions of the space environment driven by the Sun and it’s impacts on objects in the solar system. Learn more about space weather: https://science.nasa.gov/space-weather-2/ || ",
            "hits": 526
        },
        {
            "id": 5609,
            "url": "https://svs.gsfc.nasa.gov/5609/",
            "result_type": "Visualization",
            "release_date": "2026-01-26T05:00:00-05:00",
            "title": "Heliophysics Satellite Fleet - 2026",
            "description": "A tour of the NASA Heliophysics fleet from near-Earth satellites out to the Voyagers beyond the heliopause.",
            "hits": 912
        },
        {
            "id": 20412,
            "url": "https://svs.gsfc.nasa.gov/20412/",
            "result_type": "Animation",
            "release_date": "2026-01-21T11:00:00-05:00",
            "title": "Artemis II Flight Path Animations",
            "description": "Animated Flight Path of Artemis II and comparison with NASA's Lunar Reconnaissance Orbiter and the Apollo mission orbits.",
            "hits": 104035
        },
        {
            "id": 14942,
            "url": "https://svs.gsfc.nasa.gov/14942/",
            "result_type": "Produced Video",
            "release_date": "2026-01-20T11:00:00-05:00",
            "title": "Roman and Webb Comparison Graphics from Far and Wide",
            "description": "This page contains individual animation clips from the Far and Wide series. These clips all focus on the relationship between the Nancy Grace Roman and James Webb space telescopes: how they are different and how they will work together. These animations may be useful in presentations and other video products. || ",
            "hits": 192
        },
        {
            "id": 14718,
            "url": "https://svs.gsfc.nasa.gov/14718/",
            "result_type": "Infographic",
            "release_date": "2026-01-09T10:00:00-05:00",
            "title": "NASA's Heliophysics Fleet Graphics (2025)",
            "description": "NASA has a fleet of spacecraft strategically placed throughout our heliosphere—from Parker Solar Probe at the Sun observing the very start of the solar wind, to satellites around Earth, to the farthest human-made object, Voyager, which is sending back observations on interstellar space. Each mission is positioned at a critical, well-thought out vantage point to observe and understand the flow of energy and particles throughout the solar system—all helping us untangle the effects of the star we live with.The graphics below show the Heliophysics Division fleet as of December 2025. Green indicates missions in operation and blue indicates missions in extended operation. Numbers in parentheses indicate how many spacecraft the mission currently includes. || ",
            "hits": 197
        },
        {
            "id": 14945,
            "url": "https://svs.gsfc.nasa.gov/14945/",
            "result_type": "Produced Video",
            "release_date": "2026-01-09T09:00:00-05:00",
            "title": "NASA’s Pandora Satellite to Explore Exoplanets and Stars",
            "description": "Artist’s concept of NASA’s Pandora mission, which will help scientists untangle the signals from exoplanets’ atmospheres — worlds beyond our solar system — and their stars.Credit: NASA's Goddard Space Flight CenterAlt text: The Pandora spacecraft with an exoplanet and two stars in the backgroundImage description: A metallic spacecraft takes up most of this image. Its body is made of a cylindrical telescope attached to a square base. Inside the telescope is the reflection of an orange star. A line of three solar panels extends from the right side of the spacecraft at a 45-degree angle. On the right side of the background is a large planet streaked with purple, pink, and white. To the left of the planet are two stars. One is small, yellow, and very close to the planet. The other is white and is almost totally eclipsed by the spacecraft. || Pandora_Graphic_No_Text.jpg (6000x3000) [3.5 MB] || Pandora_Graphic_No_Text.png (6000x3000) [22.7 MB] || ",
            "hits": 462
        },
        {
            "id": 14937,
            "url": "https://svs.gsfc.nasa.gov/14937/",
            "result_type": "Produced Video",
            "release_date": "2025-12-23T11:00:00-05:00",
            "title": "NASA's Roman Space Telescope: Widening Our Gaze",
            "description": "The NASA Astrophysics fleet of spacecraft has an impressive range of capabilities. What is the next step in exploring the cosmos? The Nancy Grace Roman Space Telescope, NASA’s upcoming flagship mission, will take Hubble’s resolution and widen its infrared view to more than 100 times the coverage in every single image. Roman is a survey telescope that can peer through the Milky Way’s obscuring dust, and see faint, distant galaxies. Roman’s rigid design allows it to scan large regions of sky very quickly. Hubble would take 1,000 years to observe what Roman can see in one. Roman’s 18 4k x 4k detectors create 300-megapixel images covering an area of sky slightly larger than the full Moon. Roman will also look at the same regions of space repeatedly over time, allowing astronomers to see changes and observe temporary events like supernovae. Roman’s surveys of deep space and the center of our Milky Way galaxy will find thousands of new exoplanets, survey millions of galaxies, help us understand dark matter and dark energy, and learn more about the evolution of the universe. || ",
            "hits": 369
        },
        {
            "id": 14938,
            "url": "https://svs.gsfc.nasa.gov/14938/",
            "result_type": "Visualization",
            "release_date": "2025-12-22T11:00:00-05:00",
            "title": "Artemis Science: Visualizing NASA’s Next Lunar Flyby",
            "description": "Artemis II visualization lead Ernie Wright explains how his data-driven animations are helping astronauts to prepare for a historic flyby of the Moon.Complete transcript available.Universal Production Music: “Black Cloud” and “Magic Trick” by Hugo Dubery [SACEM] and Philippe Galtier [SACEM]; “Connecting Ideas” by Christopher Timothy White [PRS]; “Transitions” by Ben Niblett [PRS] and Jon Cotton [PRS]Watch this video on the NASA Goddard YouTube channel and Facebook. || Artemis-Sci-Wright-A2Sim-Thumbnail_print.jpg (1024x576) [102.1 KB] || Artemis-Sci-Wright-A2Sim-Thumbnail.jpg (1920x1080) [533.4 KB] || Artemis-Sci-Wright-A2Sim-Thumbnail.png (1920x1080) [1.2 MB] || Artemis-Sci-Wright-A2Sim-Thumbnail_searchweb.png (320x180) [64.7 KB] || Artemis-Sci-Wright-A2Sim-Thumbnail_thm.png (80x40) [6.2 KB] || 14938_Artemis_Sci_Wright_A2Sim_720.mp4 (1280x720) [93.2 MB] || 14938_Artemis_Sci_Wright_A2Sim_1080.mp4 (1920x1080) [520.8 MB] || ArtemisSciWrightA2SimCaptions.en_US.srt [9.1 KB] || ArtemisSciWrightA2SimCaptions.en_US.vtt [8.7 KB] || 14938_Artemis_Sci_Wright_A2Sim_4K.mp4 (3840x2160) [3.2 GB] || 14938_Artemis_Sci_Wright_A2Sim_ProRes.mov (3840x2160) [20.2 GB] || ",
            "hits": 3061
        },
        {
            "id": 14939,
            "url": "https://svs.gsfc.nasa.gov/14939/",
            "result_type": "Produced Video",
            "release_date": "2025-12-19T00:00:00-05:00",
            "title": "Multi-camera Time-lapse of Roman's Assembly Completion",
            "description": "NASA’s next big eye on the cosmos is now fully assembled. On Nov. 25, technicians joined the inner and outer portions of the Nancy Grace Roman Space Telescope in the largest clean room at the agency’s Goddard Space Flight Center in Greenbelt, Maryland. || ",
            "hits": 136
        },
        {
            "id": 5582,
            "url": "https://svs.gsfc.nasa.gov/5582/",
            "result_type": "Visualization",
            "release_date": "2025-12-18T13:50:00-05:00",
            "title": "OSIRIS-APEX Earth Flyby September 23, 2025",
            "description": "On Sept. 23, 2025, NASA’s OSIRIS-APEX (Origins, Spectral Interpretation, Resource Identification, and Security – Apophis Explorer) mission flew within about 2,100 miles (3,400 kilometers) of Earth, part of its journey to asteroid Apophis.",
            "hits": 142
        },
        {
            "id": 14917,
            "url": "https://svs.gsfc.nasa.gov/14917/",
            "result_type": "Infographic",
            "release_date": "2025-12-12T10:00:00-05:00",
            "title": "Roman Galactic Plane Survey",
            "description": "No description available.",
            "hits": 226
        },
        {
            "id": 14933,
            "url": "https://svs.gsfc.nasa.gov/14933/",
            "result_type": "Produced Video",
            "release_date": "2025-12-04T09:00:00-05:00",
            "title": "XRISM Finds Elemental Bounty in Supernova Remnant",
            "description": "Observations of the Cassiopeia A supernova remnant by the Resolve instrument aboard the NASA-JAXA XRISM (X-ray Imaging and Spectroscopy Mission) spacecraft revealed strong evidence for potassium (green squares) in the southeast and northern parts of the remnant. Grids superposed on a multiwavelength image of the remnant represent the fields of view of two Resolve measurements made in December 2023. Each square represents one pixel of Resolve’s detector. Weaker evidence of potassium (yellow squares) in the west suggests that the original star may have had underlying asymmetries before it exploded. Credit: NASA’s Goddard Space Flight Center; X-ray: NASA/CXC/SAO; Optical: NASA/ESA/STScI; IR: NASA/ESA/CSA/STScI/Milisavljevic et al., NASA/JPL/CalTech; Image Processing: NASA/CXC/SAO/J. Schmidt and K. ArcandAlt text: The Cassiopeia A supernova remnant with the XRISM Resolve fields of viewImage description: Supernova remnant Cassiopeia A appears as a large circular object outlined by electric blue filaments, set against a black background. Strings of vibrant colors weave throughout, with blue representing Chandra data, red, green, and blue representing Webb data, and Hubble data showing a multitude of stars that dot the view. Two nearly square grids are laid on top of the remnant slightly overlapping. The upper grid has six squares filled yellow, representing weaker evidence for potassium. In the opposite corner of that grid, five squares are filled green, representing a positive potassium detection. The lower grid has six boxes filled green in a wide M-like shape. The image is labeled “North” at the top center, “West” on the right, and “Southeast” to the left. || cas_a_with_resolve_1.png (800x645) [96.7 KB] || cas_a_with_resolve_1_print.jpg (1024x825) [125.5 KB] || cas_a_with_resolve_1_searchweb.png (320x180) [120.5 KB] || cas_a_with_resolve_1_web.png (320x258) [161.2 KB] || cas_a_with_resolve_1_thm.png (80x40) [7.6 KB] || ",
            "hits": 331
        },
        {
            "id": 14932,
            "url": "https://svs.gsfc.nasa.gov/14932/",
            "result_type": "Produced Video",
            "release_date": "2025-12-02T08:00:00-05:00",
            "title": "Bio-Essential Sugars Discovered in Samples from Asteroid Bennu",
            "description": "OSIRIS-REx Project Scientist Daniel Glavin discusses the discovery of ribose and glucose in samples of asteroid Bennu, and the implications for the formation and evolution of life on Earth.Complete transcript available.Watch this video on the NASA.gov Video YouTube channel. || Bennu-Sugars-Thumbnail_print.jpg (1024x576) [175.2 KB] || Bennu-Sugars-Thumbnail.jpg (1280x720) [534.2 KB] || Bennu-Sugars-Thumbnail.png (1280x720) [892.3 KB] || Bennu-Sugars-Thumbnail_searchweb.png (320x180) [77.4 KB] || Bennu-Sugars-Thumbnail_thm.png (80x40) [6.8 KB] || 14932_Bennu_Sugars_Interview_Glavin_720.mp4 (1280x720) [180.6 MB] || 14932_Bennu_Sugars_Interview_Glavin_1080.mp4 (1920x1080) [1011.6 MB] || BennuSugarsGlavinCaptionsV2.en_US.srt [18.4 KB] || BennuSugarsGlavinCaptionsV2.en_US.vtt [17.5 KB] || 14932_Bennu_Sugars_Interview_Glavin_4K.mp4 (3840x2160) [6.2 GB] || 14932_Bennu_Sugars_Interview_Glavin_ProRes.mov (3840x2160) [47.0 GB] || ",
            "hits": 247
        },
        {
            "id": 31360,
            "url": "https://svs.gsfc.nasa.gov/31360/",
            "result_type": "Hyperwall Visual",
            "release_date": "2025-12-01T18:59:59-05:00",
            "title": "NISAR First Light Imagery",
            "description": "The NISAR (NASA-ISRO Synthetic Aperture Radar) Earth-observing radar satellite’s first images of our planet’s surface are in, and they offer a glimpse of things to come as the joint mission between NASA and ISRO (Indian Space Research Organisation) approaches full science operations later this year.",
            "hits": 115
        },
        {
            "id": 14921,
            "url": "https://svs.gsfc.nasa.gov/14921/",
            "result_type": "Produced Video",
            "release_date": "2025-11-21T09:00:00-05:00",
            "title": "IMAP Testing and Integration at NASA’s Kennedy Space Center",
            "description": "NASA’s IMAP (Interstellar Mapping and Acceleration Probe) spacecraft arrived May 10, 2025, for processing at the Astrotech Space Operations Facility near the agency’s Kennedy Space Center in Florida. The mission will study how the Sun shapes the boundaries of the heliosphere, the bubble around our solar system.  A semitrailer transported the spacecraft from NASA’s Marshall Space Flight Center in Huntsville, Alabama, after completing thermal vacuum testing, which simulates the harsh conditions of space, at the X-ray and Cryogenic Facility. Astrotech provides the facility and technicians to prepare the spacecraft for launch, including fueling and encapsulation.  The IMAP spacecraft launched Sept. 24, 2025, on a SpaceX Falcon 9 rocket from Launch Complex 39A at NASA Kennedy. || ",
            "hits": 158
        },
        {
            "id": 14928,
            "url": "https://svs.gsfc.nasa.gov/14928/",
            "result_type": "Produced Video",
            "release_date": "2025-11-20T10:00:00-05:00",
            "title": "TESS Triples Size of Pleiades Star Cluster",
            "description": "These young, hot blue stars are members of the Pleiades open star cluster and reside about 430 light-years away in the northern constellation Taurus. The brightest stars are visible to the unaided eye during evenings from October to April. A new study finds the cluster to be triple the size previously thought — and shows that its stars are scattered across the night sky. The Schmidt telescope at the Palomar Observatory in California captured this color-composite image. Credit: NASA, ESA, and AURA/CaltechAlt text: Members of the Pleiades shine in blue. Image description: The Pleiades are shown in this image. Six of the stars, all blue-white, are larger than the others and have diffraction spikes and faint blue circles around them. Other, smaller blue stars are also scattered across the image. Patches of swirling blue dust surround some of the stars. || STScI-01EVVEYWX1TA3MGBK5F6EFQVGQ.jpg (4877x3513) [1.1 MB] || ",
            "hits": 433
        },
        {
            "id": 5503,
            "url": "https://svs.gsfc.nasa.gov/5503/",
            "result_type": "Visualization",
            "release_date": "2025-11-19T12:00:00-05:00",
            "title": "ESCAPADE Theoretical Flight Through Active Mars Magnetosphere",
            "description": "NASA's Escape and Plasma Acceleration Dynamics Explorers mission, or ESCAPADE, aims to study Mars' real-time response to the solar wind and how the Martian magnetosphere changes over time, helping us better understand Mars' climate history. In this data visualization, we use the September 13, 2017 solar storm that arrived at Mars as an example of a storm that the twin ESCAPADE spacecraft might study.",
            "hits": 395
        },
        {
            "id": 14926,
            "url": "https://svs.gsfc.nasa.gov/14926/",
            "result_type": "Produced Video",
            "release_date": "2025-11-14T23:00:00-05:00",
            "title": "ESCAPADE Launch",
            "description": "NASA’s ESCAPADE (Escape and Plasma Acceleration and Dynamics Explorers) spacecraft launched at 3:55 p.m. EST on Thursday, Nov. 13, 2025, aboard a Blue Origin New Glenn rocket from Launch Complex 36 at Cape Canaveral Space Force Station in Florida. Ground controllers for the ESCAPADE mission established communications with both spacecraft by 10:35 p.m. EST the same day.The twin spacecraft, built by Rocket Lab, will investigate how a never-ending, million-mile-per-hour stream of particles from the Sun, known as the solar wind, has gradually stripped away much of the Martian atmosphere, causing the planet to cool and its surface water to evaporate. The mission is led by the University of California, Berkeley.Learn more on NASA.gov. || ",
            "hits": 294
        },
        {
            "id": 14666,
            "url": "https://svs.gsfc.nasa.gov/14666/",
            "result_type": "Produced Video",
            "release_date": "2025-11-13T12:00:00-05:00",
            "title": "ESCAPADE Launch Phase and Deployment Animations",
            "description": "The Escape and Plasma Acceleration and Dynamics Explorers, or ESCAPADE, will use two identical spacecraft to investigate how the solar wind interacts with Mars’ magnetic environment and how this interaction drives the planet’s atmospheric escape. The first multi-spacecraft orbital science mission to the Red Planet, ESCAPADE’s twin orbiters will take simultaneous observations from different locations around Mars to reveal the planet’s real-time response to space weather and how the Martian magnetosphere changes over time.The ESCAPADE mission will be carried into orbit on the second launch of Blue Origin’s New Glenn rocket. New Glenn is a single-configuration, heavy-lift orbital launch vehicle capable of routinely carrying both spacecraft and people to low Earth orbits, geostationary transfer orbits, cislunar orbits (between Earth and the Moon), and beyond via Earth-departure orbits like the one required for ESCAPADE. The vehicle is named after John Glenn, the first American astronaut to orbit Earth.The ESCAPADE mission is managed by the Space Sciences Laboratory at the University of California, Berkeley, with key partners Rocket Lab, NASA's Goddard Space Flight Center, Embry-Riddle Aeronautical University, Advanced Space LLC, and Blue Origin. || ",
            "hits": 113
        },
        {
            "id": 14920,
            "url": "https://svs.gsfc.nasa.gov/14920/",
            "result_type": "Produced Video",
            "release_date": "2025-11-13T12:00:00-05:00",
            "title": "Preparing for Martian Explorers: NASA's ESCAPADE Investigates Mars Space Weather",
            "description": "NASA’s new ESCAPADE mission is launching to Mars to help us better understand the Sun’s influence on Mars’ past and present. Its work could help protect future human explorers from potentially dangerous space weather when they set foot on the Red Planet.For the first time, the mission will use two identical spacecraft to investigate how the solar wind interacts with Mars’ magnetic environment and how this interaction drives the planet’s atmospheric escape. Its observations will reveal the planet’s real-time response to space weather and how the Martian magnetosphere changes over time.The ESCAPADE orbiters build on earlier Mars missions, such as NASA’s MAVEN (Mars Atmosphere and Volatile Evolution) orbiter. The MAVEN mission has one spacecraft that has been studying Mars’ atmospheric loss since arriving at the Red Planet in 2014.ESCAPADE is scheduled to launch no earlier than fall 2025 from Cape Canaveral Space Force Station Launch Complex 36 in Florida.Find out more about the ESCAPADE mission: https://science.nasa.gov/mission/escapade/ || ",
            "hits": 148
        },
        {
            "id": 14915,
            "url": "https://svs.gsfc.nasa.gov/14915/",
            "result_type": "Produced Video",
            "release_date": "2025-11-13T00:00:00-05:00",
            "title": "ESCAPADE Trajectory Animations",
            "description": "The Escape and Plasma Acceleration and Dynamics Explorers, or ESCAPADE, mission will use two identical spacecraft to investigate how the solar wind interacts with Mars’ magnetic environment and how this interaction drives the planet’s atmospheric escape. The first multi-spacecraft orbital science mission to the Red Planet, ESCAPADE’s twin orbiters will take simultaneous observations from different locations around Mars to reveal the planet’s real-time response to space weather and how the Martian magnetosphere changes over time.The ESCAPADE mission is being carried into orbit on the second launch of Blue Origin’s New Glenn rocket (NG-2) and is scheduled to launch in November 2025 from Cape Canaveral, Florida. New Glenn is a single-configuration, heavy-lift orbital launch vehicle capable of routinely carrying both spacecraft and people to low Earth orbits, geostationary transfer orbits, cislunar orbits (between Earth and the Moon), and beyond via Earth-departure orbits like the one required for ESCAPADE. The vehicle is named after John Glenn, the first American astronaut to orbit Earth.The ESCAPADE mission is managed by the Space Sciences Laboratory at the University of California, Berkeley, with key partners Rocket Lab, NASA's Goddard Space Flight Center, Embry-Riddle Aeronautical University, Advanced Space LLC, and Blue Origin.Below are animations demonstrating the different phases of the mission's trajectory from traveling from Earth to Mars to implementing its science orbits around the Red Planet. || ",
            "hits": 549
        },
        {
            "id": 14918,
            "url": "https://svs.gsfc.nasa.gov/14918/",
            "result_type": "Produced Video",
            "release_date": "2025-11-11T00:00:00-05:00",
            "title": "ESCAPADE Prepares for Flight (2025)",
            "description": "The Escape and Plasma Acceleration and Dynamics Explorers, or ESCAPADE, will use two identical spacecraft to investigate how the solar wind interacts with Mars’ magnetic environment and how this interaction drives the planet’s atmospheric escape. The first multi-spacecraft orbital science mission to the Red Planet, ESCAPADE’s twin orbiters will take simultaneous observations from different locations around Mars to reveal the planet’s real-time response to space weather and how the Martian magnetosphere changes over time.The ESCAPADE mission is being carried into orbit on the second launch of Blue Origin’s New Glenn rocket (NG-2) and is scheduled to launch in November 2025 from Cape Canaveral, Florida. New Glenn is a single-configuration, heavy-lift orbital launch vehicle capable of routinely carrying both spacecraft and people to low Earth orbits, geostationary transfer orbits, cislunar orbits (between Earth and the Moon), and beyond via Earth-departure orbits like the one required for ESCAPADE. The vehicle is named after John Glenn, the first American astronaut to orbit Earth.The ESCAPADE mission is managed by the Space Sciences Laboratory at the University of California, Berkeley, with key partners Rocket Lab, NASA's Goddard Space Flight Center, Embry-Riddle Aeronautical University, Advanced Space LLC, and Blue Origin. || ",
            "hits": 267
        },
        {
            "id": 14907,
            "url": "https://svs.gsfc.nasa.gov/14907/",
            "result_type": "Produced Video",
            "release_date": "2025-09-30T14:00:00-04:00",
            "title": "What is space weather?",
            "description": "Though it is almost 100 million miles away from Earth, the Sun influences our daily lives in ways you may not realize.A farmer stops their planting operations due to poor GPS signal for their autonomous tractor. A power grid manager changes the configuration of their network to ensure a blackout doesn’t occur due to voltage instability. A pilot switches to back-up communication equipment due to loss of high-frequency radio. A commercial internet company providing service to the military must change the orbit of their spacecraft to avoid a collision due to increased atmospheric drag.These are a few examples of the ways the Sun influences our everyday lives. This is what we define as space weather – the conditions of the space environment driven by the Sun and its impacts on objects in the solar system. || ",
            "hits": 235
        },
        {
            "id": 14904,
            "url": "https://svs.gsfc.nasa.gov/14904/",
            "result_type": "Produced Video",
            "release_date": "2025-09-24T12:00:00-04:00",
            "title": "NASA, NOAA Launch Three Spacecraft to Map Sun’s Influence Across Space",
            "description": "NASA and the National Oceanic and Atmospheric Administration (NOAA) launched three new missions Wednesday, Sept. 24, 2025, to investigate the Sun’s influence across the solar system.At 7:30 a.m. EDT, a SpaceX Falcon 9 rocket lifted off from Launch Complex 39A at NASA’s Kennedy Space Center in Florida carrying the agency’s IMAP (Interstellar Mapping and Acceleration Probe), Carruthers Geocorona Observatory, and NOAA’s SWFO-L1 (Space Weather Follow On-Lagrange 1) spacecraft.Learn more about IMAP: https://science.nasa.gov/mission/imap/Learn more about Carruthers Geocorona Observatory: https://science.nasa.gov/mission/carruthers-geocorona-observatory/Learn more about SWFO-L1: https://science.nasa.gov/mission/swfo-l1/ || ",
            "hits": 191
        },
        {
            "id": 14898,
            "url": "https://svs.gsfc.nasa.gov/14898/",
            "result_type": "Produced Video",
            "release_date": "2025-09-15T15:00:00-04:00",
            "title": "Our Home In Space Series",
            "description": "The heliosphere, the massive bubble created by our Sun, is like our “house” in space. It shelters us from harsh weather outside and regulates the environment inside. Without our heliosphere, Earth may never have developed life at all.  But there’s a lot we still don’t know about our cosmic home. How big is it, and what is it shaped like? How does it compare to the “houses” created by other stars? A new NASA mission will soon unlock answers to these questions and more.  Launching as early as Sept. 23, NASA’s Interstellar Mapping and Acceleration Probe will help us construct the “blueprints” or our home in space. This three-part series explores how we learn about our heliosphere, how it protects us, and how it advances the search for life elsewhere in the Universe. || ",
            "hits": 179
        },
        {
            "id": 14896,
            "url": "https://svs.gsfc.nasa.gov/14896/",
            "result_type": "Produced Video",
            "release_date": "2025-09-12T11:00:00-04:00",
            "title": "NASA's IMAP Mission (Trailer)",
            "description": "NASA’s Interstellar Mapping and Acceleration Probe, or IMAP, is a new mission that will map the boundaries of our heliosphere — a giant protective bubble created by the Sun that encapsulates our solar system. The spacecraft will study the Sun’s activity and how the heliosphere boundary interacts with the local galactic neighborhood beyond.The heliosphere protects the solar system from dangerous high-energy particles called galactic cosmic rays. Mapping the heliosphere’s boundaries helps scientists understand our home in space and how it came to be habitable. IMAP is launching no earlier than Sept. 23, 2025, aboard a SpaceX Falcon 9 rocket from Launch Complex 39A at NASA’s Kennedy Space Center in Florida.Learn more about the IMAP mission. || ",
            "hits": 108
        },
        {
            "id": 14885,
            "url": "https://svs.gsfc.nasa.gov/14885/",
            "result_type": "Produced Video",
            "release_date": "2025-09-12T06:00:00-04:00",
            "title": "NASA Interview Opportunity: Groundbreaking New NASA Mission Will Give Us The Most Detailed Look Yet At Our Solar System’s Shield",
            "description": "Scroll down page for associated cut b-roll and pre-recorded soundbites. || IMAP_banner.jpeg (1600x640) [185.0 KB] || IMAP_banner_print.jpg (1024x409) [110.6 KB] || IMAP_banner_searchweb.png (320x180) [73.1 KB] || IMAP_banner_thm.png (80x40) [6.7 KB] || ",
            "hits": 136
        },
        {
            "id": 14893,
            "url": "https://svs.gsfc.nasa.gov/14893/",
            "result_type": "Produced Video",
            "release_date": "2025-09-04T12:00:00-04:00",
            "title": "Three Missions Launch to Track Space Weather (Official NASA Trailer)",
            "description": "Soon, there will be three new ways to study the Sun’s influence across the solar system with the launch of a trio of NASA and National Oceanic and Atmospheric Administration (NOAA) spacecraft. Launching September 23, 2025, from NASA’s Kennedy Space Center in Florida, the missions include NASA’s IMAP (Interstellar Mapping and Acceleration Probe), NASA’s Carruthers Geocorona Observatory, and NOAA’s SWFO-L1 (Space Weather Follow On-Lagrange 1) spacecraft.The missions will each study different effects of the solar wind — the continuous stream of particles emitted by the Sun — and space weather — the changing conditions in space driven by the Sun — from their origins at the Sun to their farthest reaches billions of miles away at the edge of our solar system. Research from the missions will help us better understand the Sun’s influence on Earth’s habitability, map our home in space, and protect satellites and voyaging astronauts from space weather threats.Watch the launch with NASA from anywhere in the world. We will provide live broadcast coverage on September 23 from 6:40 a.m. to about 9:15 a.m. EDT (1040 to 1415 UTC) on NASA+, Amazon Prime, Twitch, YouTube, and more. Learn how to watch NASA content through a variety of platforms, including social media.Media Resources• Interstellar Mapping and Acceleration Probe (IMAP)• Carruthers Geocorona Observatory• Space Weather Follow On-Lagrange 1 (SWFO-L1) || ",
            "hits": 196
        },
        {
            "id": 14888,
            "url": "https://svs.gsfc.nasa.gov/14888/",
            "result_type": "Produced Video",
            "release_date": "2025-08-22T16:00:00-04:00",
            "title": "IMAP Traveling to L1",
            "description": "The Interstellar Mapping and Acceleration Probe, or IMAP, will explore and map the very boundaries of our heliosphere — a huge bubble created by the Sun's wind that encapsulates our entire solar system — and study how the heliosphere interacts with the local galactic neighborhood beyond. Additionally, IMAP will support real-time observations of the solar wind and energetic particles, which can produce hazardous conditions in the space environment near Earth. The IMAP spacecraft is situated at the first Earth-Sun Lagrange point (L1), at around one million miles from Earth toward the Sun. There, it will collect and measure particles that have traveled from the Sun, the heliosphere’s boundary 6 to 9 billion miles away, and interstellar space. At L1, it can also provide about a half hour's warning to voyaging astronauts and spacecraft near Earth of harmful radiation coming their way. || ",
            "hits": 271
        },
        {
            "id": 40543,
            "url": "https://svs.gsfc.nasa.gov/gallery/imap/",
            "result_type": "Gallery",
            "release_date": "2025-08-20T00:00:00-04:00",
            "title": "IMAP – Interstellar Mapping and Acceleration Probe",
            "description": "NASA's Interstellar Mapping and Acceleration Probe (IMAP) maps the boundaries of the heliosphere — the protective bubble surrounding the Sun and planets that is inflated by the constant stream of particles from the Sun called the solar wind. As a modern-day celestial cartographer, IMAP also explores and charts the vast range of particles in interplanetary space, helping to investigate important issues in heliophysics, the field studying the Sun and its sphere of influence. IMAP provides near-real-time information about the solar wind to provide advanced space weather warnings from its location at Lagrange point 1, one million miles from Earth toward the Sun.\n\nThe mission launched on Sept. 24, 2025, from NASA’s Kennedy Space Center in Florida.\n\nLearn more: https://science.nasa.gov/mission/imap/",
            "hits": 394
        },
        {
            "id": 5535,
            "url": "https://svs.gsfc.nasa.gov/5535/",
            "result_type": "Visualization",
            "release_date": "2025-08-15T09:05:00-04:00",
            "title": "What Apollo Saw in Sunlight While in Orbit",
            "description": "A map showing the sunlit parts of the lunar surface that the Apollo astronauts could see from orbit. The darkened parts of the map were either never in sunlight or were beyond the horizon of the spacecraft.",
            "hits": 5136
        },
        {
            "id": 5536,
            "url": "https://svs.gsfc.nasa.gov/5536/",
            "result_type": "Visualization",
            "release_date": "2025-08-15T09:00:00-04:00",
            "title": "Simulated Artemis II Lunar Flyby",
            "description": "This visualization simulates what the crew of Artemis II might see out the window on the day of their closest approach to the Moon.",
            "hits": 17847
        },
        {
            "id": 40539,
            "url": "https://svs.gsfc.nasa.gov/gallery/artemis-iiscience/",
            "result_type": "Gallery",
            "release_date": "2025-08-15T00:00:00-04:00",
            "title": "Moon Visualizations, Animations, Videos - Artemis II Lunar Science",
            "description": "While the Artemis II crew will be the first humans to test NASA’s Orion spacecraft in space, they will also conduct science investigations that will inform future deep space missions. During the 10-day past the Moon and back, the Orion capsule will fly by the far side of the Moon — the side that always faces away from Earth. During this three-hour period, astronauts will analyze and photograph geologic features, such as impact craters and ancient lava flows. They will rely on the extensive geology training they received in the classroom and in Moon-like places on Earth to describe nuances in shapes, textures, and colors — the type of information that reveals the geologic history of an area. These skills will be critical to exploring the Moon’s South Pole region through future missions.\n\nLearn more about Artemis II lunar science.\nLearn more about all Artemis II science experiments\nLearn more about the Moon at science.nasa.gov/moon.\n\n**Note: This page will be continually updated through the Artemis II mission. **\n\nMedia Contact: Lonnie Shekhtman NASA’s Goddard Space Flight Center in Greenbelt, Md.",
            "hits": 8247
        },
        {
            "id": 20410,
            "url": "https://svs.gsfc.nasa.gov/20410/",
            "result_type": "Animation",
            "release_date": "2025-08-14T00:00:00-04:00",
            "title": "IMAP Beauty Passes",
            "description": "NASA’s IMAP (Interstellar Mapping and Acceleration Probe) will explore and map the very boundaries of our heliosphere — a huge bubble created by the Sun's wind that encapsulates our entire solar system — and study how the heliosphere interacts with the local galactic neighborhood beyond.As a modern-day celestial cartographer, IMAP will also explore and chart the vast range of particles in interplanetary space, helping to investigate two of the most important overarching issues in heliophysics — the energization of charged particles from the Sun, and the interaction of the solar wind at its boundary with interstellar space. Additionally, IMAP will support real-time observations of the solar wind and energetic particles, which can produce hazardous conditions in the space environment near Earth. The IMAP spacecraft will be located at Lagrange Point 1, or L1. Lagrange points are positions in space where objects sent there tend to stay put. At L1, which is around 1 million miles from Earth towards the Sun, the gravitational pull of the Sun and Earth are balanced, allowing spacecraft to reduce fuel consumption needed to remain in position. At L1, IMAP will have a clear view of the heliosphere and will also be positioned to provide advanced warning of incoming solar storms headed to Earth. Learn more about IMAP.Below are conceptual animations highlighting the IMAP spacecraft. || ",
            "hits": 295
        },
        {
            "id": 14881,
            "url": "https://svs.gsfc.nasa.gov/14881/",
            "result_type": "Animation",
            "release_date": "2025-08-13T00:00:00-04:00",
            "title": "Fermi Spacecraft Animations 2025",
            "description": "A beauty pass of NASA's Fermi Gamma-ray Space Telescope. The spacecraft fills the frame with a starry background at 0:05 and is fully in frame with Earth partially in the background at 0:11.Credit: NASA's Goddard Space Flight Center/CI Lab || Fermi_Beauty_Still.jpg (3840x2160) [250.1 KB] || Fermi_Beauty_Still_searchweb.png (320x180) [11.5 KB] || Fermi_Beauty_Still_thm.png (80x40) [1.6 KB] || Fermi_BeautyPass_1080.mp4 (1920x1080) [46.1 MB] || Fermi_BeautyPass_4k.mp4 (3840x2160) [113.7 MB] || Fermi_BeautyPass_V002_ProRes_4k.mov (3840x2160) [1.3 GB] || ",
            "hits": 97
        },
        {
            "id": 14876,
            "url": "https://svs.gsfc.nasa.gov/14876/",
            "result_type": "Produced Video",
            "release_date": "2025-07-25T15:00:00-04:00",
            "title": "NASA’s TRACERS Mission Launches to Study Earth’s Magnetic Shield",
            "description": "NASA’s newest mission, TRACERS, soon will begin studying how Earth’s magnetic shield protects our planet from the effects of space weather. Short for Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, the twin TRACERS spacecraft lifted off at 11:13 a.m. PDT (2:13 p.m. EDT) Wednesday, July 23, 2025, aboard a SpaceX Falcon 9 rocket from Space Launch Complex 4 East at Vandenberg Space Force Base in California.Learn more about the mission: https://science.nasa.gov/mission/tracers/ || ",
            "hits": 128
        },
        {
            "id": 14875,
            "url": "https://svs.gsfc.nasa.gov/14875/",
            "result_type": "Produced Video",
            "release_date": "2025-07-25T13:00:00-04:00",
            "title": "Carruthers Geocorona Observatory Arrives at Kennedy Space Center",
            "description": "NASA's Carruthers Geocorona Observatory arrived at the Astrotech Space Operations Facility near the agency’s Kennedy Space Center in Florida on Monday, July 21, 2025. The Carruthers Geocorona Observatory is a small satellite set to operate at Lagrange Point 1 (L1), an orbit point between the Earth and Sun about one million miles away. Carruthers will use its ultraviolet cameras to monitor how space weather from the Sun impacts the exosphere, the outermost part of Earth’s atmosphere. The observatory will launch as a rideshare with NASA’s Interstellar Mapping and Acceleration Probe no earlier than September 2025. || ",
            "hits": 66
        },
        {
            "id": 40538,
            "url": "https://svs.gsfc.nasa.gov/gallery/carruthers-geocorona-observatory/",
            "result_type": "Gallery",
            "release_date": "2025-07-25T00:00:00-04:00",
            "title": "Carruthers Geocorona Observatory",
            "description": "The Carruthers Geocorona Observatory is a SmallSat mission at the Sun-Earth Lagrange point 1 (L1) where it uses advanced ultraviolet imagers to monitor Earth’s exosphere, the outermost layer of the atmosphere.. Carruthers is the first SmallSat to operate at L1 and the first mission dedicated to observing the exosphere, including its response to solar-driven space weather\n\nThe Carruthers Geocorona Observatory launched on Sept. 24, 2025, from NASA’s Kennedy Space Center in Florida.\n\nLearn more: https://science.nasa.gov/mission/carruthers-geocorona-observatory/",
            "hits": 162
        },
        {
            "id": 14868,
            "url": "https://svs.gsfc.nasa.gov/14868/",
            "result_type": "Produced Video",
            "release_date": "2025-07-23T00:00:00-04:00",
            "title": "XRISM Satellite X-rays Milky Way’s Sulfur in Detail",
            "description": "An international team of scientists have provided an unprecedented tally of elemental sulfur spread between the stars using data from the Japan-led XRISM (X-ray Imaging and Spectroscopy Mission) spacecraft.Astronomers used X-rays from two binary star systems to detect sulfur in the interstellar medium, the gas and dust found in the space between stars. It’s the first direct measurement of both sulfur’s gas and solid phases, a unique capability of X-ray spectroscopy, XRISM’s (pronounced “crism”) primary method of studying the cosmos.Using ultraviolet light, researchers have found gaseous sulfur in the space between stars. In denser parts of the interstellar medium, such as the molecular clouds where stars and planets are born, this form of sulfur quickly disappears.Scientists assume the sulfur condenses into a solid, either by combining with ice or mixing with other elements.When a doctor performs an X-ray here on Earth, they place the patient between an X-ray source and a detector. Bone and tissue absorb different amounts of the light as it travels through the patient's body, creating contrast in the detector.Scientists did something similar by picking a portion of the interstellar medium with the right density — not so thin that all the X-rays would pass through unchanged, but also not so dense that they would all be absorbed.Then they selected a bright X-ray source behind that section of the medium, a binary star system called GX 340+0 located over 35,000 light-years away in the southern constellation Scorpius.Using the Resolve instrument on XRISM, the researchers were able to measure the energy of GX 340+0’s X-rays and determined that sulfur was present not only as a gas, but also as a solid, possibly mixed with iron.Iron-sulfur compounds are often found in meteorites, so scientists have long thought they might be one way sulfur solidifies out of molecular clouds to travel through the universe. XRISM’s observations could match a few of these compounds — pyrrhotite, troilite, and pyrite, which is sometimes called fool’s gold.The researchers were also able to use measurements from a second X-ray binary called 4U 1630-472 that helped confirm their findings. || ",
            "hits": 100
        },
        {
            "id": 5571,
            "url": "https://svs.gsfc.nasa.gov/5571/",
            "result_type": "Visualization",
            "release_date": "2025-07-22T17:00:00-04:00",
            "title": "NASA's Fleet of Active Satellites (July 2025)",
            "description": "This visualization shows the orbits of NASA satellites considered operational as of July 2025. It includes both NASA-managed missions and those operated by partner organizations.",
            "hits": 1655
        },
        {
            "id": 14873,
            "url": "https://svs.gsfc.nasa.gov/14873/",
            "result_type": "Produced Video",
            "release_date": "2025-07-22T17:00:00-04:00",
            "title": "Lagrange Point 1 Animation",
            "description": "Lagrange points are positions in space where objects sent there tend to stay put. At Lagrange points, the gravitational pull of two large masses precisely equals the centripetal force required for a small object to move with them. These points in space can be used by spacecraft to reduce fuel consumption needed to remain in position.Of the five Lagrange points, three are unstable and two are stable. The unstable Lagrange points - labeled L1, L2 and L3 - lie along the line connecting the two large masses. The stable Lagrange points - labeled L4 and L5 - form the apex of two equilateral triangles that have the large masses at their vertices. L4 leads the orbit of earth and L5 follows.The L1 point of the Earth-Sun system affords an uninterrupted view of the Sun and will be home to three new heliophysics missions in 2025 - NASA's Interstellar Mapping and Acceleration Probe (IMAP), NASA's Carruthers Geocorona Observatory, and NOAA's Space Weather Follow On-Lagrange 1 (SWFO-L1). || ",
            "hits": 706
        },
        {
            "id": 40537,
            "url": "https://svs.gsfc.nasa.gov/gallery/svsdbgallery2025goddardsummerfilmfest/",
            "result_type": "Gallery",
            "release_date": "2025-07-21T00:00:00-04:00",
            "title": "2025 Goddard Summer Film Fest",
            "description": "Hosted by the NASA Goddard Office of Communications is the 16th Annual Summer Film Fest. Immerse yourself in a thrilling exploration of the year’s most exciting missions and topics, such as JWST, Roman Space Telescope, OSIRIS-REx, Parker Solar Probe, global ocean currents, wildfires and beyond.",
            "hits": 116
        },
        {
            "id": 14863,
            "url": "https://svs.gsfc.nasa.gov/14863/",
            "result_type": "Produced Video",
            "release_date": "2025-07-17T09:00:00-04:00",
            "title": "Quickshot: New NASA Mission Launching Soon To Study Earth’s Space Weather Shield",
            "description": "Scroll down page for advisory with suggested questions and anchor intro. You will also find the associated cut b-roll and pre-recorded soundbites below.Click here for more information about TRACERS || Live_Shot_Banner_TRACERS_final.jpg (1800x720) [256.8 KB] || Live_Shot_Banner_TRACERS_final_print.jpg (1024x409) [150.1 KB] || Live_Shot_Banner_TRACERS_final_searchweb.png (320x180) [82.8 KB] || Live_Shot_Banner_TRACERS_final_thm.png (80x40) [6.5 KB] || ",
            "hits": 92
        },
        {
            "id": 5555,
            "url": "https://svs.gsfc.nasa.gov/5555/",
            "result_type": "Visualization",
            "release_date": "2025-07-15T10:00:00-04:00",
            "title": "TRACERS through Earth's Polar Cusps",
            "description": "Visualization of the orbit of the twin TRACERS (Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites) satellites that will explore the process of magnetic reconnection in Earth's polar regions and its effects on our atmosphere.",
            "hits": 186
        },
        {
            "id": 14862,
            "url": "https://svs.gsfc.nasa.gov/14862/",
            "result_type": "Produced Video",
            "release_date": "2025-07-14T11:00:00-04:00",
            "title": "NASA’s TRACERS Studies Magnetic Explosions Above Earth",
            "description": "NASA's TRACERS mission, or the Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, will fly in low Earth orbit through the polar cusps, funnel-shaped holes in the magnetic field, to study magnetic reconnection and its effects in Earth's atmosphere. Magnetic reconnection is a mysterious process that happens when the solar wind, made of electrically charged particles and magnetic fields from the Sun, collides with Earth's magnetic shield, causing magnetic field lines to violently snap and explosively fling away particles at high speeds. This process has huge impacts on Earth, from causing breathtaking auroras to disrupting communications and power grids on Earth. TRACERS is launching no earlier than summer 2025 aboard a SpaceX Falcon 9 rocket from Space Launch Complex 4 East at Vandenberg Space Force Base in California.Find out more about the TRACERS mission and how it will help us better understand the ways space weather affects us on Earth: https://science.nasa.gov/mission/tracers/ || ",
            "hits": 440
        },
        {
            "id": 5258,
            "url": "https://svs.gsfc.nasa.gov/5258/",
            "result_type": "Visualization",
            "release_date": "2025-06-16T00:00:00-04:00",
            "title": "Tracking Satellites and Space Debris in Earth Orbit (Feb 2024)",
            "description": "This series of visualizations illustrates the population of objects orbiting Earth as of February 2024.",
            "hits": 3383
        },
        {
            "id": 31354,
            "url": "https://svs.gsfc.nasa.gov/31354/",
            "result_type": "Animation",
            "release_date": "2025-06-13T16:19:00-04:00",
            "title": "PUNCH",
            "description": "NASA’s PUNCH Releases Its First Images of Huge Eruptions from Sun",
            "hits": 137
        },
        {
            "id": 31345,
            "url": "https://svs.gsfc.nasa.gov/31345/",
            "result_type": "Visualization",
            "release_date": "2025-06-11T18:59:59-04:00",
            "title": "One Year of PACE OCI Chlorophyll",
            "description": "The Ocean Color Instrument (OCI) on the Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) satellite is a spectrometer designed to identify and quantify phytoplankton. This is a year-long visualization of the level 3 mapped chlorophyll data.",
            "hits": 131
        },
        {
            "id": 20404,
            "url": "https://svs.gsfc.nasa.gov/20404/",
            "result_type": "Animation",
            "release_date": "2025-06-02T12:00:00-04:00",
            "title": "TRACERS Science Animations",
            "description": "The TRACERS, or the Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, mission will help scientists understand an explosive process called magnetic reconnection and its effects in Earth’s atmosphere. Magnetic reconnection occurs when magnetic fields and particles from the Sun interact with Earth’s magnetic field. By understanding this process, scientists will be able to better understand and prepare for impacts of solar activity on Earth, such as auroras and disruptions to telecommunications.Learn more about the mission:  https://science.nasa.gov/mission/tracers/ || ",
            "hits": 182
        },
        {
            "id": 5479,
            "url": "https://svs.gsfc.nasa.gov/5479/",
            "result_type": "Visualization",
            "release_date": "2025-05-30T00:00:00-04:00",
            "title": "Ocean Currents in equirectangular projection",
            "description": "Ocean flows beauty version.  The flows are colored by temperature data from 600 meters and deeper.  Flows above 600 meters deep are white. || These are ocean currents based on ECCO-2 data.   This is supplementary material that is related to the new Perpetual Ocean 2 tour.   These versions were created specifically for Science on a Sphere, but can be used for other purposes as well. || Ocean flows colored by salinity data || Ocean flows colored by temperature data || Beauty color bar ||",
            "hits": 622
        },
        {
            "id": 31349,
            "url": "https://svs.gsfc.nasa.gov/31349/",
            "result_type": "Hyperwall Visual",
            "release_date": "2025-05-28T18:59:59-04:00",
            "title": "Juno images, 2024 - early 2025",
            "description": "Several recent images from the JunoCam and Jovian Infrared Auroral Mapper (JIRAM) instruments show volcanic hot spots on IO, polar storms and Jupiter's moon Amalthea.",
            "hits": 423
        },
        {
            "id": 14799,
            "url": "https://svs.gsfc.nasa.gov/14799/",
            "result_type": "Produced Video",
            "release_date": "2025-05-27T20:54:00-04:00",
            "title": "Astrophysics: Observing the Universe Vertical Video",
            "description": "This page contains vertically-formatted Astrophysics videos related to general astrophysical imagery.",
            "hits": 488
        },
        {
            "id": 5524,
            "url": "https://svs.gsfc.nasa.gov/5524/",
            "result_type": "Interactive",
            "release_date": "2025-05-22T08:00:59-04:00",
            "title": "\"Snap It!\" Solar Eclipse Photography Game",
            "description": "The Traveler needs your help! They have come to Earth to study an event we call a total solar eclipse. Can you help the Traveler snap photos of an eclipse?",
            "hits": 67
        },
        {
            "id": 14842,
            "url": "https://svs.gsfc.nasa.gov/14842/",
            "result_type": "B-Roll",
            "release_date": "2025-05-19T00:00:00-04:00",
            "title": "Roman Space Telescope's Outer Shell Passes Thermal Test - Drone Footage",
            "description": "The outer portion of the Nancy Grace Roman Space Telescope recently passed a major milestone: thermal cycling. Drone footage captures its emergence from the test facility and return to the clean room. The Roman Space Telescope is a NASA observatory designed to perform wide-field imaging and surveys of the near-infrared sky. || ",
            "hits": 81
        },
        {
            "id": 5476,
            "url": "https://svs.gsfc.nasa.gov/5476/",
            "result_type": "Visualization",
            "release_date": "2025-05-16T13:00:00-04:00",
            "title": "SOS - Earth Observing Fleet - Jan 2025",
            "description": "An animated view of NASA's Earth observing fleet",
            "hits": 334
        },
        {
            "id": 14841,
            "url": "https://svs.gsfc.nasa.gov/14841/",
            "result_type": "Produced Video",
            "release_date": "2025-05-12T09:00:00-04:00",
            "title": "Carruthers Geocorona Observatory Assembly & Testing at BAE Systems",
            "description": "The Carruthers Geocorona Observatory is a SmallSat mission at Lagrange Point 1 (L1) where it will use an advanced ultraviolet imager to monitor Earth’s exosphere — the outermost layer of the atmosphere — and the exosphere’s response to solar-driven space weather. Carruthers is poised to become the first SmallSat to operate at L1 and the first to deliver continuous exospheric observations from this vantage point.Led by the University of Illinois Urbana-Champaign, the mission is scheduled to launch no earlier than 2025 as a rideshare component of NASA’s Interstellar Mapping and Acceleration Probe (IMAP) mission, which will explore the boundaries of the heliosphere, the bubble that is inflated by the solar wind and surrounds the Sun and planets. The Carruthers Geocorona Observatory is a vital addition to NASA’s fleet of heliophysics satellites. NASA Heliophysics Division missions study a vast, interconnected system from the Sun to the space surrounding Earth and other planets to the farthest limits of the Sun’s constantly flowing streams of solar wind. || ",
            "hits": 49
        },
        {
            "id": 14835,
            "url": "https://svs.gsfc.nasa.gov/14835/",
            "result_type": "Produced Video",
            "release_date": "2025-05-09T15:00:00-04:00",
            "title": "What Happened During the Biggest Geomagnetic Storm in Over 20 Years",
            "description": "On May 10, 2024, the first G5 or “severe” geomagnetic storm in over two decades hit Earth. The event did not cause any catastrophic damages, but it did produce surprising effects on Earth. The storm, which has been called the best-documented geomagnetic storm in history, spread auroras to unusually low latitudes and produced effects spanning from the ground to near-Earth space. Data captured during this historic event will be analyzed for years to come, revealing new lessons about the nature of geomagnetic storms and how best to weather them.Learn more:• What NASA Is Learning from the Biggest Geomagnetic Storm in 20 Years• How NASA Tracked the Most Intense Solar Storm in Decades || ",
            "hits": 529
        },
        {
            "id": 14836,
            "url": "https://svs.gsfc.nasa.gov/14836/",
            "result_type": "Infographic",
            "release_date": "2025-05-07T00:00:00-04:00",
            "title": "Roman Systems Infographic",
            "description": "This infographic shows the two major subsystems that make up NASA’s Nancy Grace Roman Space Telescope. The subsystems are each undergoing testing prior to being joined together this fall. || Roman_Systems_Infographic_V1_Final_print.jpg (1024x576) [160.5 KB] || Roman_Systems_Infographic_V1_Final_16bit.png (3840x2160) [30.7 MB] || Roman_Systems_Infographic_V1_Final_8bit.png (3840x2160) [8.2 MB] || Roman_Systems_Infographic_V1_Final.jpg (3840x2160) [1.2 MB] || Roman_Systems_Infographic_V1_Final_searchweb.png (320x180) [88.8 KB] || Roman_Systems_Infographic_V1_Final_thm.png [6.4 KB] || ",
            "hits": 105
        },
        {
            "id": 14831,
            "url": "https://svs.gsfc.nasa.gov/14831/",
            "result_type": "Hyperwall Visual",
            "release_date": "2025-04-29T18:59:59-04:00",
            "title": "Seeing Earth as Only NASA Can",
            "description": "NASA's first image of Earth was taken by Explorer 6 in 1959. It was a grainy, black-and-white photo captured from 17,000 miles above the planet's surface and depicted little more than a sliver of cloud cover over the Pacific Ocean. Nearly 70 years later, NASA's vantage point of Earth has advanced dramatically — forever changing the way we see our home planet. As we continue reaching for the stars, training a careful eye on Earth keeps things in perspective.",
            "hits": 550
        },
        {
            "id": 14829,
            "url": "https://svs.gsfc.nasa.gov/14829/",
            "result_type": "Produced Video",
            "release_date": "2025-04-25T10:00:00-04:00",
            "title": "TRACERS Thermal Vacuum Testing at Millennium Space Systems",
            "description": "NASA’s Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, or TRACERS, is embarking on its integration and testing campaign, during which all of the instruments and components will be added to the spacecraft structure, tested to ensure they will survive the harsh environments of launch and space, and made ready to execute its mission. The TRACERS mission will help scientists understand an explosive process called magnetic reconnection and its effects in Earth’s atmosphere. Magnetic reconnection occurs when magnetic fields and particles from the Sun interact with Earth’s magnetic field. By understanding this process, scientists will be able to better understand and prepare for impacts of solar activity on Earth, such as auroras and disruptions to telecommunications.Below are clips of Millennium Space Systems’ team members conducting Thermal Vacuum (TVAC) testing at the Boeing Space Systems Laboratory in El Segundo, California.Learn more about the mission: https://science.nasa.gov/mission/tracers/ || ",
            "hits": 132
        },
        {
            "id": 14827,
            "url": "https://svs.gsfc.nasa.gov/14827/",
            "result_type": "Produced Video",
            "release_date": "2025-04-24T15:00:00-04:00",
            "title": "TRACERS Instrument Development & Testing at the University of Iowa",
            "description": "NASA’s Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, or TRACERS, is embarking on its integration and testing campaign, during which all of the instruments and components will be added to the spacecraft structure, tested to ensure they will survive the harsh environments of launch and space, and made ready to execute its mission. The TRACERS mission will help scientists understand an explosive process called magnetic reconnection and its effects in Earth’s atmosphere. Magnetic reconnection occurs when magnetic fields and particles from the Sun interact with Earth’s magnetic field. By understanding this process, scientists will be able to better understand and prepare for impacts of solar activity on Earth, such as auroras and disruptions to telecommunications.Below are clips of TRACERS’ instrument design, build, and testing at the University of Iowa in Iowa City, Iowa.Learn more about the mission: https://science.nasa.gov/mission/tracers/ || ",
            "hits": 62
        },
        {
            "id": 14828,
            "url": "https://svs.gsfc.nasa.gov/14828/",
            "result_type": "Produced Video",
            "release_date": "2025-04-24T15:00:00-04:00",
            "title": "TRACERS Testing & Integration at Millennium Space Systems",
            "description": "NASA’s Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites, or TRACERS, is embarking on its integration and testing campaign, during which all of the instruments and components will be added to the spacecraft structure, tested to ensure they will survive the harsh environments of launch and space, and made ready to execute its mission. The TRACERS mission will help scientists understand an explosive process called magnetic reconnection and its effects in Earth’s atmosphere. Magnetic reconnection occurs when magnetic fields and particles from the Sun interact with Earth’s magnetic field. By understanding this process, scientists will be able to better understand and prepare for impacts of solar activity on Earth, such as auroras and disruptions to telecommunications.Below are clips of TRACERS’ testing and integration at the Millennium Space Systems Small Satellite Factory in El Segundo, California. Learn more about the mission: https://science.nasa.gov/mission/tracers/ || ",
            "hits": 91
        },
        {
            "id": 14830,
            "url": "https://svs.gsfc.nasa.gov/14830/",
            "result_type": "Produced Video",
            "release_date": "2025-04-23T09:00:00-04:00",
            "title": "Carruthers Geocorona Observatory Images",
            "description": "The Carruthers Geocorona Observatory is a SmallSat mission at Lagrange Point 1 (L1) where it will use an advanced ultraviolet imager to monitor Earth’s exosphere — the outermost layer of the atmosphere — and the exosphere’s response to solar-driven space weather. Carruthers is poised to become the first SmallSat to operate at L1 and the first to deliver continuous exospheric observations from this vantage point.Led by the University of Illinois Urbana-Champaign, the mission is scheduled to launch no earlier than 2025 as a rideshare component of NASA’s Interstellar Mapping and Acceleration Probe (IMAP) mission, which will explore the boundaries of the heliosphere, the bubble that is inflated by the solar wind and surrounds the Sun and planets. The Carruthers Geocorona Observatory is a vital addition to NASA’s fleet of heliophysics satellites. NASA Heliophysics Division missions study a vast, interconnected system from the Sun to the space surrounding Earth and other planets to the farthest limits of the Sun’s constantly flowing streams of solar wind. || ",
            "hits": 125
        },
        {
            "id": 40535,
            "url": "https://svs.gsfc.nasa.gov/gallery/tracers/",
            "result_type": "Gallery",
            "release_date": "2025-04-23T00:00:00-04:00",
            "title": "TRACERS – Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites",
            "description": "The Tandem Reconnection and Cusp Electrodynamics Reconnaissance Satellites (TRACERS) helps understand magnetic reconnection and its effects in Earth’s atmosphere. Magnetic reconnection occurs when two magnetic fields, such as the Sun’s and Earth’s, intertwine and explosively realign. By understanding this process, scientists will be able to better understand and prepare for impacts of solar activity on Earth.\n\nTRACERS launched on July 23, 2025, from Vandenberg Space Force Base in California.\n\nLearn more: https://science.nasa.gov/mission/tracers/",
            "hits": 206
        },
        {
            "id": 14821,
            "url": "https://svs.gsfc.nasa.gov/14821/",
            "result_type": "Produced Video",
            "release_date": "2025-04-14T14:00:00-04:00",
            "title": "Lucy Will Explore Asteroid Donaldjohanson",
            "description": "Lucy’s flyby of main-belt asteroid 52246 Donaldjohanson will provide the first close look at this surviving remnant of the solar system’s chaotic past.Complete transcript available.Universal Production Music: “Nico’s Journey” by Nicholas Smith [PRS]; “Knowing Half the Future” and “Temporal Timings” by Lee John Gretton [PRS]; “Poly Propulsion” by Alfie Solo [PRS] Watch this video on the NASA Goddard YouTube channel. || Lucy_DJ_Preview_Thumbnail_V3_print.jpg (1024x576) [240.8 KB] || Lucy_DJ_Preview_Thumbnail_V3.png (1280x720) [1.1 MB] || Lucy_DJ_Preview_Thumbnail_V3_searchweb.png (320x180) [81.6 KB] || 14821_Lucy_Asteroid_DJ_Preview_V2_720.mp4 (1280x720) [58.1 MB] || 14821_Lucy_Asteroid_DJ_Preview_V2_1080.mp4 (1920x1080) [325.2 MB] || LucyDJPreviewCaptions.en_US.srt [5.6 KB] || LucyDJPreviewCaptions.en_US.vtt [5.3 KB] || Lucy_DJ_Preview_Thumbnail_V3_thm.png [6.5 KB] || 14821_Lucy_Asteroid_DJ_Preview_V2_4K.mp4 (3840x2160) [4.0 GB] || 14821_Lucy_Asteroid_DJ_Preview_V2_ProRes.mov (3840x2160) [25.8 GB] || ",
            "hits": 71
        },
        {
            "id": 20402,
            "url": "https://svs.gsfc.nasa.gov/20402/",
            "result_type": "Animation",
            "release_date": "2025-04-14T14:00:00-04:00",
            "title": "Lucy Flyby of Asteroid Donaldjohanson: Animations",
            "description": "Close up of Lucy's APP swiveling to keep DJ in frame. || LUCY_DJ_CloseUp_30fps_4k_proRes_v02.00001_print.jpg (1024x576) [79.5 KB] || LUCY_DJ_CloseUp_30fps_4k_proRes_v02.00001_searchweb.png (320x180) [48.0 KB] || LUCY_DJ_CloseUp_30fps_4k_h264_v02.mp4 (3840x2160) [73.9 MB] || LUCY_DJ_CloseUp_30fps_4k_proRes_v02.00001_thm.png [4.4 KB] || LUCY_DJ_CloseUp_30fps_4k_proRes_v02.webm (3840x2160) [11.9 MB] || LUCY_DJ_CloseUp_30fps_4k_proRes_v02.mov (3840x2160) [3.3 GB] || ",
            "hits": 57
        },
        {
            "id": 14816,
            "url": "https://svs.gsfc.nasa.gov/14816/",
            "result_type": "Produced Video",
            "release_date": "2025-04-11T11:00:00-04:00",
            "title": "IMAP Testing and Integration at NASA's Marshall Space Flight Center",
            "description": "NASA’s Interstellar Mapping and Acceleration Probe, or IMAP, arrived at NASA’s Marshall Space Flight Center on March 18, 2025, to undergo testing prior to launch. At Marshall, IMAP will be exposed to extreme temperature changes during a 28-day-long test inside a thermal vacuum chamber (TVAC). By simulating the harsh conditions in space, scientists and engineers can identify any potential issues before launch.To learn more about the testing visit: https://science.nasa.gov/blogs/imap/2025/05/07/nasas-imap-completes-thermal-vacuum-testing-campaign/After thermal vacuum testing concluded at NASA's Marshall Space Flight Center, IMAP was transported to Florida: https://science.nasa.gov/blogs/imap/2025/05/10/nasas-interstellar-mapping-mission-arrives-in-florida/ || ",
            "hits": 89
        },
        {
            "id": 14815,
            "url": "https://svs.gsfc.nasa.gov/14815/",
            "result_type": "B-Roll",
            "release_date": "2025-04-09T14:00:00-04:00",
            "title": "IMAP Testing and Integration at NASA's Goddard Space Flight Center",
            "description": "NASA’s Interstellar Mapping and Acceleration Probe, or IMAP, is embarking on its yearlong integration and testing campaign, during which its instruments and components will be added to the spacecraft structure, tested to ensure they will survive the harsh environments of launch and space, and made ready to execute its mission.",
            "hits": 47
        },
        {
            "id": 14814,
            "url": "https://svs.gsfc.nasa.gov/14814/",
            "result_type": "B-Roll",
            "release_date": "2025-04-09T08:00:00-04:00",
            "title": "IMAP Testing and Integration at Johns Hopkins Applied Physics Lab",
            "description": "NASA’s Interstellar Mapping and Acceleration Probe, or IMAP, is embarking on its yearlong integration and testing campaign, during which all of the instruments and components will be added to the spacecraft structure, tested to ensure they will survive the harsh environments of launch and space, and made ready to execute its mission.",
            "hits": 115
        },
        {
            "id": 14811,
            "url": "https://svs.gsfc.nasa.gov/14811/",
            "result_type": "Produced Video",
            "release_date": "2025-04-02T00:00:00-04:00",
            "title": "IMAP: Mapping The Heliosphere & Sun",
            "description": "The Interstellar Mapping and Acceleration Probe, or IMAP, will explore and map the very boundaries of our heliosphere — a huge bubble created by the Sun's wind that encapsulates our entire solar system — and study how the heliosphere interacts with the local galactic neighborhood beyond.The mission’s investigation of the boundaries of the heliosphere will be primarily done with energetic neutral atoms, or ENAs. An ENA is a type of uncharged particle formed when an energetic positively charged ion runs into a slow-moving neutral atom. The ion picks up an extra negatively charged electron in the collision, making it neutral — hence the name energetic neutral atom. This process frequently happens wherever there is plasma in space, such as throughout the heliosphere, including its boundary.The IMAP-Lo, IMAP-HI, and IMAP-Ultra instruments on IMAP are imaging the energies and composition of ENAs.Learn more about IMAP: https://science.nasa.gov/mission/imap/ || ",
            "hits": 153
        },
        {
            "id": 14802,
            "url": "https://svs.gsfc.nasa.gov/14802/",
            "result_type": "Produced Video",
            "release_date": "2025-03-28T14:31:59-04:00",
            "title": "Earth to Space: A National Symphony Orchestra Concert",
            "description": "Explore the vastness of space with music inspired by the planets, stars, and beyond! In anticipation of the upcoming voyage of Artemis II, the National Symphony Orchestra celebrates the discoveries and beauty of space through music and images produced by NASA. Explore this page to learn more about the visuals used in the Kennedy Center's 2025 Earth to Space Festival NSO Family Concert.",
            "hits": 118
        }
    ]
}