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首页> 外文期刊>The Astrophysical Journal. Letters >Spectral Resolution-linked Bias in Transit Spectroscopy of Extrasolar Planets
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Spectral Resolution-linked Bias in Transit Spectroscopy of Extrasolar Planets

机译:辐射行星传输光谱中的光谱分辨率偏置

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摘要

We re-visit the principles of transmission spectroscopy for transiting extrasolar planets, focusing on the overlap between the planetary spectrum and the illuminating stellar spectrum. Virtually all current models of exoplanetary transmission spectra utilize an approximation that is inaccurate when the spectrum of the illuminating star has a complex line structure, such as molecular bands in M-dwarf spectra. In those cases, it is desirable to model the observations using a coupled stellar-planetary radiative transfer model calculated at high spectral resolving power, followed by convolution to the observed resolution. Not consistently accounting for overlap of stellar M-dwarf and planetary lines at high spectral resolution can bias the modeled amplitude of the exoplanetary transmission spectrum, producing modeled absorption that is too strong. We illustrate this bias using the exoplanet TRAPPIST-1b, as observed using Hubble Space Telescope/WFC3. The bias in this case is about 250 ppm, 12% of the modeled transit absorption. Transit spectroscopy using JWST will have access to longer wavelengths where the water bands are intrinsically stronger, and the observed signal-to-noise ratios will be higher than currently possible. We therefore expect that this resolution-linked bias will be especially important for future JWST observations of TESS-discovered super-Earths and mini-Neptunes transiting M-dwarfs.
机译:我们重新访问过透射谱的原理,用于过渡额外行星,重点关注行星谱与照明恒星光谱之间的重叠。实际上,当照明星的光谱具有复杂线结构的频谱时,外部传输光谱的所有当前模型都利用了不准确的近似值,例如M-Dwarf光谱中的分子带。在这些情况下,希望使用在高光谱分辨率下计算的耦合的恒星行星辐射转移模型进行模拟观察,然后卷积对观察到的分辨率。在高光谱分辨率下恒星M-DWARF和行星线重叠不一致地核算,可以偏置外部传输谱的建模幅度,产生太强的模型吸收。我们使用Exoplanet Trappist-1b示出了这种偏差,如使用哈勃空间望远镜/ WFC3所观察到的。这种情况下的偏差约为250ppm,12%的建模过渡吸收。使用JWST的传输光谱将可以访问水带本质上更强的更长波长,并且观察到的信噪比将高于目前可能的。因此,我们预计该决议锁定的偏差对于未来的JWST观察苔丝发现的超地球和迷你Neptunes过境M-Dwarfs的分明偏差尤为重要。

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