{
    "id": 12160,
    "url": "https://svs.gsfc.nasa.gov/12160/",
    "page_type": "Produced Video",
    "title": "Hitomi Microcalorimeter Array Animation (4k)",
    "description": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center || Astro-H_Calorimeter-STILL_print.jpg (1024x576) [64.0 KB] || Astro-H_Calorimeter-STILL.jpg (3840x2160) [716.3 KB] || Astro-H_Calorimeter-STILL_searchweb.png (320x180) [55.3 KB] || Astro-H_Calorimeter-STILL_web.png (320x180) [55.3 KB] || Astro-H_Calorimeter-STILL_thm.png (80x40) [5.5 KB] || Astro-H_Calorimeter-STILL.tiff (3840x2160) [63.3 MB] || Astro-H_Calorimeter_Simple-H264_Good_3840x2160_2997.mov (3840x2160) [27.1 MB] || Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.webm (3840x2160) [4.9 MB] || Astro-H_Calorimeter_Simple-H264_Best_3840x2160_5994.mov (3840x2160) [448.6 MB] || Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.mov (3840x2160) [1.8 GB] || ",
    "release_date": "2016-07-06T13:00:00-04:00",
    "update_date": "2025-02-02T23:19:11.101267-05:00",
    "main_image": {
        "id": 426547,
        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL_print.jpg",
        "filename": "Astro-H_Calorimeter-STILL_print.jpg",
        "media_type": "Image",
        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
        "width": 1024,
        "height": 576,
        "pixels": 589824
    },
    "main_video": null,
    "main_credits": {
        "Visualizations by": [
            {
                "name": "Scott Wiessinger",
                "employer": "USRA"
            }
        ]
    },
    "progress": "Complete",
    "media_groups": [
        {
            "id": 333521,
            "url": "https://svs.gsfc.nasa.gov/12160/#media_group_333521",
            "widget": "Video player",
            "title": "",
            "caption": "",
            "description": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. <p><p>Credit: NASA's Goddard Space Flight Center",
            "items": [
                {
                    "id": 268244,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426547,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL_print.jpg",
                        "filename": "Astro-H_Calorimeter-STILL_print.jpg",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 1024,
                        "height": 576,
                        "pixels": 589824
                    }
                },
                {
                    "id": 268240,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426541,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL.jpg",
                        "filename": "Astro-H_Calorimeter-STILL.jpg",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 268245,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426546,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL_searchweb.png",
                        "filename": "Astro-H_Calorimeter-STILL_searchweb.png",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 320,
                        "height": 180,
                        "pixels": 57600
                    }
                },
                {
                    "id": 268246,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426548,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL_web.png",
                        "filename": "Astro-H_Calorimeter-STILL_web.png",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 320,
                        "height": 180,
                        "pixels": 57600
                    }
                },
                {
                    "id": 268247,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426549,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL_thm.png",
                        "filename": "Astro-H_Calorimeter-STILL_thm.png",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 80,
                        "height": 40,
                        "pixels": 3200
                    }
                },
                {
                    "id": 268239,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426540,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter-STILL.tiff",
                        "filename": "Astro-H_Calorimeter-STILL.tiff",
                        "media_type": "Image",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 268243,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426545,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter_Simple-H264_Good_3840x2160_2997.mov",
                        "filename": "Astro-H_Calorimeter_Simple-H264_Good_3840x2160_2997.mov",
                        "media_type": "Movie",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 268248,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426550,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.webm",
                        "filename": "Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.webm",
                        "media_type": "Movie",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 268242,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426544,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter_Simple-H264_Best_3840x2160_5994.mov",
                        "filename": "Astro-H_Calorimeter_Simple-H264_Best_3840x2160_5994.mov",
                        "media_type": "Movie",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 268241,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426542,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.mov",
                        "filename": "Astro-H_Calorimeter_Simple_ProRes_3840x2160_60.mov",
                        "media_type": "Movie",
                        "alt_text": "This animation illustrates how the microcalorimeter array at the heart of Hitomi's revolutionary Soft X-ray Spectrometer works. X-ray light collected by a telescope strikes the detector. Each photon heats the material by an amount directly proportional to its energy. The instrument, which is cooled to near absolute zero, detects this minute temperature change. Credit: NASA's Goddard Space Flight Center",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                }
            ],
            "extra_data": {}
        },
        {
            "id": 311768,
            "url": "https://svs.gsfc.nasa.gov/12160/#media_group_311768",
            "widget": "Single image",
            "title": "",
            "caption": "",
            "description": "Frames of the above animation.",
            "items": [
                {
                    "id": 204489,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 857785,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/frame-000415_print.jpg",
                        "filename": "frame-000415_print.jpg",
                        "media_type": "Image",
                        "alt_text": "Frames of the above animation.",
                        "width": 1024,
                        "height": 576,
                        "pixels": 589824
                    }
                },
                {
                    "id": 204488,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 857784,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/frame-000415.jpg",
                        "filename": "frame-000415.jpg",
                        "media_type": "Image",
                        "alt_text": "Frames of the above animation.",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                },
                {
                    "id": 204487,
                    "type": "media",
                    "extra_data": null,
                    "title": null,
                    "caption": null,
                    "instance": {
                        "id": 426543,
                        "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012160/frames/3840x2160_16x9_60p/Simple/",
                        "filename": "Simple",
                        "media_type": "Frames",
                        "alt_text": "Frames of the above animation.",
                        "width": 3840,
                        "height": 2160,
                        "pixels": 8294400
                    }
                }
            ],
            "extra_data": {}
        }
    ],
    "studio": "gms",
    "funding_sources": [
        "NASA Astrophysics"
    ],
    "credits": [
        {
            "role": "Animator",
            "people": [
                {
                    "name": "Scott Wiessinger",
                    "employer": "USRA"
                }
            ]
        },
        {
            "role": "Project support",
            "people": [
                {
                    "name": "Swarupa Nune",
                    "employer": "InuTeq"
                }
            ]
        }
    ],
    "missions": [
        "Hitomi (Astro-H)"
    ],
    "series": [
        "Astrophysics Animations"
    ],
    "tapes": [],
    "papers": [],
    "datasets": [],
    "nasa_science_categories": [
        "Universe"
    ],
    "keywords": [
        "Detector",
        "Hitomi",
        "Hyperwall",
        "JAXA",
        "X-ray"
    ],
    "recommended_pages": [],
    "related": [
        {
            "id": 12120,
            "url": "https://svs.gsfc.nasa.gov/12120/",
            "page_type": "Produced Video",
            "title": "NASA Goddard Spectrometer Launches on Hitomi Observatory",
            "description": "An artist's rendering of Hitomi in orbit.Credit: JAXA || Astro_h_art.jpg (3179x4500) [2.5 MB] || Astro_h_art_searchweb.png (180x320) [102.0 KB] || Astro_h_art_thm.png (80x40) [6.9 KB] || ",
            "release_date": "2016-02-22T14:00:00-05:00",
            "update_date": "2023-05-03T13:48:53.330020-04:00",
            "main_image": {
                "id": 436221,
                "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012100/a012120/Astro_h_art_searchweb.png",
                "filename": "Astro_h_art_searchweb.png",
                "media_type": "Image",
                "alt_text": "An artist's rendering of Hitomi in orbit.Credit: JAXA",
                "width": 180,
                "height": 320,
                "pixels": 57600
            }
        }
    ],
    "sources": [],
    "products": [
        {
            "id": 12297,
            "url": "https://svs.gsfc.nasa.gov/12297/",
            "page_type": "Produced Video",
            "title": "Hitomi Measures X-ray Winds of the Perseus Galaxy Cluster",
            "description": "A revolutionary instrument aboard the ill-fated Hitomi satellite returned the most detailed measurements yet made of the million-degree atmosphere at the core of a galaxy cluster. Watch the video to learn more.Credit: NASA's Goddard Space Flight CenterMusic: \"Natural Awe\" and \"To the Tower\" from Killer TracksComplete transcript available. || Astro-H_Calorimeter-STILL_print.jpg (1024x576) [64.7 KB] || Astro-H_Calorimeter-STILL_searchweb.png (320x180) [55.3 KB] || Astro-H_Calorimeter-STILL_web.png (320x180) [55.3 KB] || Astro-H_Calorimeter-STILL_thm.png (80x40) [5.4 KB] || Astro-H_Calorimeter-STILL.tiff (3840x2160) [63.3 MB] || 12297_Hitomi_SXS_FINAL_ipod_sm.mp4 (320x240) [43.0 MB] || 12297_Hitomi_SXS_FINAL_lowres.mp4 (480x272) [33.7 MB] || PRORES_B-ROLL_12297_Hitomi_SXS_FINAL_prores.webm [0 bytes] || PRORES_B-ROLL_12297_Hitomi_SXS_FINAL_prores.mov (1280x720) [1.7 GB] || NASA_TV_12297_Hitomi_SXS_FINAL.mpeg (1280x720) [796.7 MB] || APPLE_TV_12297_Hitomi_SXS_FINAL_appletv-2.m4v (1280x720) [127.0 MB] || 12297_Hitomi_SXS_FINAL_youtube_hq.mov (1920x1080) [1.1 GB] || 12297_Hitomi_SXS_FINAL_ProRes_1920x1080_2997.mov (1920x1080) [3.1 GB] || ",
            "release_date": "2016-07-06T13:00:00-04:00",
            "update_date": "2023-05-03T13:48:29.258047-04:00",
            "main_image": {
                "id": 423072,
                "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012200/a012297/Astro-H_Calorimeter-STILL_print.jpg",
                "filename": "Astro-H_Calorimeter-STILL_print.jpg",
                "media_type": "Image",
                "alt_text": "A revolutionary instrument aboard the ill-fated Hitomi satellite returned the most detailed measurements yet made of the million-degree atmosphere at the core of a galaxy cluster. Watch the video to learn more.Credit: NASA's Goddard Space Flight CenterMusic: \"Natural Awe\" and \"To the Tower\" from Killer TracksComplete transcript available.",
                "width": 1024,
                "height": 576,
                "pixels": 589824
            }
        }
    ],
    "newer_versions": [],
    "older_versions": [],
    "alternate_versions": []
}