论文标题

哈勃太空望远镜的近紫外线和地球的光学传输光谱作为系外行星

The Hubble Space Telescope's near-UV and optical transmission spectrum of Earth as an exoplanet

论文作者

Youngblood, Allison, Arney, Giada N., Muñoz, Antonio García, Stocke, John T., France, Kevin, Roberge, Aki

论文摘要

我们观察到2019年1月的月食,Hubble太空望远镜的STIS光谱仪,以获得第一个近紫外线(1700-3200 $Å$)作为过境外球星的近乎乌瓦仪(1700-3200 $Å$)。在任务概念研究中适当地捕获了能够执行Exo-Arths传输光谱的观测值和仪器,并且表征地球传输光谱对于确保关键光谱特征(例如Ozone或O $ _3 $)至关重要。 o $ _3 $是由o $ _2 $的光化学生产的,这是当今地球上主导代谢的产物,将来将在将来的观察中寻求作为外部行星生命的关键证据。对月食的地面观察结果在光学和近IR波长下为地球的传输光谱提供了,但最强大的O $ _3 $签名是在近紫外线中。我们描述了用于从哈勃农月生谱中提取传输光谱的观察结果和方法,并在3000-5500Å区域中识别o $ _3 $和瑞利散射的光谱特征,通过与包括地球模型的地球传输谱中的3000-5500Å区域相比,这些特征在Lunar Eclipse的陆地大气中包括地球模型。我们的近紫外光谱是毫无疑问的,这是由于在日食期间缺少狭窄的时间跨度,因为由于极强的O $ _3 $吸收,近乎紫外线的阳光并未完全衰减在地球大气中,并且当阳光传递到阳光下的阳光时,其在高度的地方通过O $ _3 $而不是上方。

We observed the 2019 January total lunar eclipse with the Hubble Space Telescope's STIS spectrograph to obtain the first near-UV (1700-3200 $Å$) observation of Earth as a transiting exoplanet. The observatories and instruments that will be able to perform transmission spectroscopy of exo-Earths are beginning to be planned, and characterizing the transmission spectrum of Earth is vital to ensuring that key spectral features (e.g., ozone, or O$_3$) are appropriately captured in mission concept studies. O$_3$ is photochemically produced from O$_2$, a product of the dominant metabolism on Earth today, and it will be sought in future observations as critical evidence for life on exoplanets. Ground-based observations of lunar eclipses have provided the Earth's transmission spectrum at optical and near-IR wavelengths, but the strongest O$_3$ signatures are in the near-UV. We describe the observations and methods used to extract a transmission spectrum from Hubble lunar eclipse spectra, and identify spectral features of O$_3$ and Rayleigh scattering in the 3000-5500 Å region in Earth's transmission spectrum by comparing to Earth models that include refraction effects in the terrestrial atmosphere during a lunar eclipse. Our near-UV spectra are featureless, a consequence of missing the narrow time span during the eclipse when near-UV sunlight is not completely attenuated through Earth's atmosphere due to extremely strong O$_3$ absorption and when sunlight is transmitted to the lunar surface at altitudes where it passes through the O$_3$ layer rather than above it.

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