论文标题

揭示多云系外行星的非灰色表面:依赖波长的表面反照率和云散射特性对检索溶液的影响

Unveiling non-gray surface of cloudy exoplanets: the influence of wavelength-dependent surface albedo and cloud scattering properties on retrieval solutions

论文作者

Wang, Fei, Fujii, Yuka, He, Jinping

论文摘要

直接成像光谱具有有关行星气氛和表面的丰富信息,以及针对此类观察的几项基于空间的任务将在不久的将来成为现实。先前的光谱检索作品在灰色表面的假设下导致了关键的大气约束,但是尚未显示波长依赖性表面反照率对检索的影响。我们通过建模具有变化的云和表面反照率参数化的地球样大气的套件,探索云和波长依赖性表面反照率的耦合效应对检索性能的影响。在已知的云散射特性的假设下,当表面覆盖物代表地面植被或海洋的覆盖物时,表面光谱反照率可以合理恢复,这可能有助于表征地球的可居住性。当无法假设云散射特性时,我们表明云特性与波长依赖性表面反照率之间的堕落性会导致大气和云特性的偏见。多周期可见的频段观测可有限地改善这种脱节性。但是,紫外线频段(r $ \ sim 6 $)$+$可见频段(r $ \ sim 140 $)对大气特性的约束与输入值在1 $σ$以内一致。如果没有短带通数据,则可以减少检索不确定性的替代解决方案是对行星云分数的先前约束,不到20%的不确定性。

Direct-imaging spectra hold rich information about a planet's atmosphere and surface, and several space-based missions aiming at such observations will become a reality in the near future. Previous spectral retrieval works have resulted in key atmospheric constraints under the assumption of a gray surface, but the effect of wavelength-dependent surface albedo on retrieval has not been shown. We explore the influence of the coupling effect of cloud and wavelength-dependent surface albedo on retrieval performance via modeling suites of Earth-like atmospheres with varying cloud and surface albedo parameterizations. Under the assumption of known cloud scattering properties, the surface spectral albedos can be reasonably recovered when the surface cover represents that of Earth-like vegetation or ocean, which may aid in characterizing the planet's habitability. When the cloud scattering properties cannot be assumed, we show that the degeneracy between the cloud properties and wavelength-dependent surface albedo leads to biased results of atmospheric and cloud properties. The multi-epoch visible band observations offer limited improvement in disentangling this degeneracy. However, the constraints on atmospheric properties from the combination of UV band (R $\sim 6$) $+$ visible band (R $\sim 140$) are consistent with input values to within 1 $σ$. If short bandpass data is not available, an alternative solution to reduce the retrieval uncertainties would be to have the prior constraints on planetary cloud fraction with less than 20% uncertainty.

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