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The High Optical Brightness of the BlueWalker 3 Satellite.

Nature(2023)SCI 1区

Instituto de Investigación en Astronomía y Ciencias Planetarias | IAU Centre for the Protection of the Dark and Quiet Sky from Satellite Constellation Interference | Centro de Astronomía (CITEVA) | The University of Auckland | School of Physical and Chemical Sciences Te Kura Matū | Lunar and Planetary Laboratory | Oukaimeden Observatory | NSFs NOIRLab | Instituto de Astronomía | High Atlas Observatory | University of Arizona Steward Observatory | Faculty of Aerospace Engineering | Instituto de Astronomıía | Consortium for Dark Sky Studies | Emeritus | SKA Observatory | Imperial College London | Department of Astronomy/DiRAC/Vera C. Rubin Observatory | ASTRON Netherlands Institute for Radio Astronomy | Instituto de Astrofísica | Astro-Engineering Center (AIUC) | Chilean Low Earth Orbit satellite (CLEOsat) Group | European Southern Observatory (Chile) Alonso de Córdova

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Abstract
Large constellations of bright artificial satellites in low Earth orbit pose significant challenges to ground-based astronomy 1 . Current orbiting constellation satellites have brightnesses between apparent magnitudes 4 and 6, whereas in the near-infrared Ks band, they can reach magnitude 2 (ref. 2 ). Satellite operators, astronomers and other users of the night sky are working on brightness mitigation strategies 3 , 4 . Radio emissions induce further potential risk to ground-based radio telescopes that also need to be evaluated. Here we report the outcome of an international optical observation campaign of a prototype constellation satellite, AST SpaceMobile’s BlueWalker 3. BlueWalker 3 features a 64.3 m 2 phased-array antenna as well as a launch vehicle adaptor (LVA) 5 . The peak brightness of the satellite reached an apparent magnitude of 0.4. This made the new satellite one of the brightest objects in the night sky. Additionally, the LVA reached an apparent V-band magnitude of 5.5, four times brighter than the current International Astronomical Union recommendation of magnitude 7 (refs. 3 , 6 ); it jettisoned on 10 November 2022 (Universal Time), and its orbital ephemeris was not publicly released until 4 days later. The expected build-out of constellations with hundreds of thousands of new bright objects 1 will make active satellite tracking and avoidance strategies a necessity for ground-based telescopes.
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Astronomical instrumentation,Astronomy and astrophysics,Space physics,Science,Humanities and Social Sciences,multidisciplinary
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要点】:该论文报告了对低地球轨道(LEO)高光学亮度的AST Space Mobile's "BlueWalker 3"卫星的国际光学观测活动,其突出创新点在于其达到峰值亮度成为夜空中最亮卫星之一,并提出随着大规模卫星星座的建立,地面望远镜需要采取主动跟踪和规避策略。

方法】:论文通过国际光学观测活动来评估BlueWalker 3卫星的亮度影响。

实验】:研究通过V-band和Ks波段测量BlueWalker 3及其LVA的亮度,得出了其对地面天文观测的潜在影响;卫星的亮度数据集未直接提及,但实验结果显示其亮度明显超过现行国际天文学联合会推荐标准。