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    "title": "Hubble Catches Possible Runaway Black Hole",
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            "description": "There’s an invisible monster on the loose! It’s barreling through intergalactic space fast enough to travel from Earth to the Moon in 14 minutes. But don’t worry, luckily this beast is very, very far away!<br><br>This potential supermassive black hole, weighing as much as 20 million Suns, has left behind a never-before-seen 200,000 light-year-long trail of newborn stars. <br><br>The streamer is twice the diameter of our Milky Way galaxy. It’s likely the result of a rare, bizarre game of galactic billiards among three massive black holes.<br><br>For more information, visit <a href=\"https://nasa.gov/hubble\" target=\"_blank\">https://nasa.gov/hubble</a>. <br><br>Video Credit:<br>Black Hole Animation<br>NASA’s Goddard Space Flight Center/Jeremy Schnittman<br><br>Image of Chandra X-Ray Observatory<br>NASA/CXC and J. Vaughan<br><br>3 Black Hole Orbits and Slingshots<br>Image from paper “A candidate runaway supermassive black hole identified by shocks and star formation in its wake” by PI Pieter Von Dokkum et al.<br><br>Schematic illustration of the runaway SMBH scenario as an explanation of the key observed features. Panels 1–5 show a “classical” slingshot scenario (e.g., Saslaw et al. 1974). The background of panel 6 is a frame from an Illustris TNG simulation (Pillepich et al. 2018)<br><br><br>Music Credit:<br>“Unclaimed Space” by Peter Nickalls [PRS] via Atmosphere Music Ltd. [PRS] and Universal Production Music.<br><br>",
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        {
            "id": 14272,
            "url": "https://svs.gsfc.nasa.gov/14272/",
            "page_type": "Produced Video",
            "title": "Hubble Finds Hungry Black Hole Twisting Captured Star Into Donut Shape",
            "description": "Black holes are gatherers, not hunters. They lie in wait until a hapless star wanders by. When the star gets close enough, the black hole's gravitational grasp violently rips it apart and sloppily devours its gasses while belching out intense radiation. Astronomers using NASA's Hubble Space Telescope have recorded a star's final moments in detail as it gets gobbled up by a black hole.For more information, visit https://nasa.gov/hubble. Music Credit“Solar Eclipse” by Alexander Ryder Mcnair [ASCAP] and Harry Gregson Williams [BMI] via Atmosphere Music Ltd. [PRS] and Universal Production Music. || ",
            "release_date": "2023-01-12T17:15:00-05:00",
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        {
            "id": 14165,
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            "title": "Hubble Measures Potential Isolated Black Hole Roaming Galaxy",
            "description": "Our Milky Way galaxy is haunted. The vast gulf of space between the stars is plied by the dead, burned-out and crushed remnants of once glorious stars. These black holes cannot be directly seen because their intense gravity swallows light. Like legendary wandering ghosts, their presence can only be deduced by seeing how they affect the environment around them.For more information, visit https://nasa.gov/hubble. Music Credits: “Celestial Spaces 2” by Joel Goodman [ASCAP] via Medley Lane Music [ASCAP] and Universal Production MusicVisualization of Multiple Black HolesESA/Hubble, N. Bartmann || ",
            "release_date": "2022-06-10T09:55:00-04:00",
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        },
        {
            "id": 14076,
            "url": "https://svs.gsfc.nasa.gov/14076/",
            "page_type": "Produced Video",
            "title": "HUBBLE FINDS A BLACK HOLE IGNITING STAR FORMATION IN A DWARF GALAXY",
            "description": "Black holes are often described as the monsters of the universe—tearing apart stars, consuming anything that comes too close, and holding light captive. Detailed evidence from NASA's Hubble Space Telescope, however, shows a black hole in a new light: fostering, rather than suppressing, star formation. Hubble imaging and spectroscopy of the dwarf starburst galaxy Henize 2-10 clearly show a gas outflow stretching from the black hole to a bright star birth region like an umbilical cord, triggering the already dense cloud into forming clusters of stars. Astronomers have previously debated that a dwarf galaxy could have a black hole analogous to the supermassive black holes in larger galaxies. Further study of dwarf galaxies, which have remained small over cosmic time, may shed light on the question of how the first seeds of supermassive black holes formed and evolved over the history of the universe. For more information, visit https://nasa.gov/hubble. Music Credits: “Champagne Age” by Damon Bradley [BMI] via Network Production Music Publishing [BMI] and Universal Production Music || ",
            "release_date": "2022-01-19T10:55:00-05:00",
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