{
    "id": 5139,
    "url": "https://svs.gsfc.nasa.gov/5139/",
    "page_type": "Visualization",
    "title": "M 5.5 5lare at Active Region 13386 - August 6, 2023",
    "description": "Solar Dynamics Observatory (SDO) operates in a geosynchronous orbit around Earth to obtain a continuous view of the Sun. The particular instrument in this visualization records imagery in the ultraviolet portion of the spectrum at wavelengths normally absorbed by Earth's atmosphere - so we need to observe them from space.The day after an X1.6 flare from Active Region 13386, a (smaller) M5.5 flare  erupts from the same region.  For details of this event, see the Space Weather database entry.For more information on the classification of solar flares, see Solar Flares: What Does It Take to Be X-Class? or X-Class: A Guide to Solar Flares. The point-spread function correction (PSF) has been applied to all this imagery. || ",
    "release_date": "2023-08-29T00:00:00-04:00",
    "update_date": "2023-08-24T10:02:47.612628-04:00",
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        "alt_text": "Active Region AR13386 launches an M 5.5 flare as it approaches the right limb of the Sun in this view from the SDO/AIA 131A filter. This region launched a flare the previous day and will launch another one the next day, before rotating over the limb as seen from Earth. The point-spread function correction (PSF) has been applied to all this imagery.",
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        "filename": "20230806_AR13386M55_AIA131.PSF_2048p30.mp4",
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        "alt_text": "Active Region AR13386 launches an M 5.5 flare as it approaches the right limb of the Sun in this view from the SDO/AIA 131A filter. This region launched a flare the previous day and will launch another one the next day, before rotating over the limb as seen from Earth. The point-spread function correction (PSF) has been applied to all this imagery.",
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    "main_credits": {
        "Visualizations by": [
            {
                "name": "Tom Bridgman",
                "employer": "Global Science and Technology, Inc."
            }
        ],
        "Produced by": [
            {
                "name": "Scott Wiessinger",
                "employer": "KBR Wyle Services, LLC"
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    "progress": "Complete",
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            "description": "Solar Dynamics Observatory (SDO) operates in a geosynchronous orbit around Earth to obtain a continuous view of the Sun. The particular instrument in this visualization records imagery in the ultraviolet portion of the spectrum at wavelengths normally absorbed by Earth's atmosphere - so we need to observe them from space.<br><br>The day after an <a href=\"https://svsdev.gsfc.nasa.gov/5138\" target=\"_blank\">X1.6 flare from Active Region 13386</a>, a (smaller) M5.5 flare  erupts from the same region.  For details of this event, see the <a href=\"https://kauai.ccmc.gsfc.nasa.gov/DONKI/view/FLR/26372/4\" target=\"_blank\">Space Weather database entry</a>.<br><br>For more information on the classification of solar flares, see <a href=\"https://www.nasa.gov/mission_pages/sunearth/news/X-class-flares.html\" target=\"_blank\">Solar Flares: What Does It Take to Be X-Class?</a> or <a href=\"https://svs.gsfc.nasa.gov/10109\" target=\"_blank\">X-Class: A Guide to Solar Flares</a>. The point-spread function correction (PSF) has been applied to all this imagery.<br><br><br>",
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                        "alt_text": "Active Region AR13386 launches an M 5.5 flare as it approaches the right limb of the Sun in this view from the SDO/AIA 131A filter. This region launched a flare the previous day and will launch another one the next day, before rotating over the limb as seen from Earth. The point-spread function correction (PSF) has been applied to all this imagery.",
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            "description": "<br><h2>What is the PSF (Point Spread-Function)?</h2>Many telescopes, especially reflecting telescopes such as the ones used on SDO (<a href=\"https://en.wikipedia.org/wiki/Reflecting_telescope\" target=\"_blank\">Wikipedia</a>), have internal structures that support various optical components. These components can result in incoming light being scattered to other parts of the image. This can appear in the image as a faint haze, brightening dark areas and dimming bright areas. The point-spread function (<a href=\"https://en.wikipedia.org/wiki/Point_spread_function\" target=\"_blank\">Wikipedia</a>) is a measure of how light that would normally be received by a single camera pixel, gets scattered onto other pixels. This is often seen as the \"spikes\" seen in images of bright stars. For SDO, it manifests as a double-X shape centered over a bright flare (see <a href=\"https://svs.gsfc.nasa.gov/11383\" target=\"_blank\">Sun Emits Third Solar Flare in Two Days</a>). The effect of this scattered light can be computed, and removed, by a process called deconvolution (<a href=\"https://en.wikipedia.org/wiki/Deconvolution\" target=\"_blank\">Wikipedia</a>). This is often a very compute-intensive process which can be sped up by using a computers graphics-processing unit (GPU) for the computation.<br>",
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    "recommended_pages": [],
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