论文标题

SpaceX Starlink卫星对Zwicky瞬态设施调查观测的影响

Impact of the SpaceX Starlink Satellites on the Zwicky Transient Facility Survey Observations

论文作者

Mroz, Przemek, Otarola, Angel, Prince, Thomas A., Dekany, Richard, Duev, Dmitry A., Graham, Matthew J., Groom, Steven L., Masci, Frank J., Medford, Michael S.

论文摘要

人们对低地球轨道(LEO)卫星星座对基于地面天文观测的影响越来越关注,尤其是对光学和红外线的宽场调查的影响。 Zwicky瞬态设施(ZTF)得益于其相机的巨大视野,为研究Leo Megaconstellations的影响(例如SpaceX的Starlink)提供了理想的设置,对天文学调查。在这里,我们分析了2019年11月至2021年9月之间收集的档案ZTF观察结果,并找到5301个卫星条纹可以归因于Starlink卫星。我们发现,随着SpaceX部署越来越多的卫星,受影响的图像的数量随着时间而增加。暮光的观察结果特别受到影响 - 暮光期间拍摄的一小部分分散图像从2019年底的0.5%增加到8月的18%。我们估计,一旦Starlink星座的大小达到10,000,基本上可能会影响暮光期间拍摄的所有ZTF图像。但是,尽管在分析期间观察到的卫星条纹增加了,但ZTF的当前科学运作尚未受到强烈影响。我们还发现,重新设计的Starlink卫星(通过安装旨在阻止阳光到达卫星天线以防止反射的遮阳板)将其亮度降低了4.6 +/- 0.1,就G,R中的原始设计而言。

There is a growing concern about an impact of low-Earth-orbit (LEO) satellite constellations on ground-based astronomical observations, in particular, on wide-field surveys in the optical and infrared. The Zwicky Transient Facility (ZTF), thanks to the large field of view of its camera, provides an ideal setup to study the effects of LEO megaconstellations - such as SpaceX's Starlink - on astronomical surveys. Here, we analyze the archival ZTF observations collected between 2019 November and 2021 September and find 5301 satellite streaks that can be attributed to Starlink satellites. We find that the number of affected images is increasing with time as SpaceX deploys more and more satellites. Twilight observations are particularly affected - a fraction of streaked images taken during twilight has increased from less than 0.5% in late 2019 to 18% in 2021 August. We estimate that once the size of the Starlink constellation reaches 10,000, essentially all ZTF images taken during twilight may be affected. However, despite the increase in satellite streaks observed during the analyzed period, the current science operations of ZTF are not yet strongly affected. We also find that redesigning Starlink satellites (by installing visors intended to block sunlight from reaching the satellite antennas to prevent reflection) reduces their brightness by a factor of 4.6 +/- 0.1 with respect to the original design in g, r, and i bands.

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