论文标题

热散射如何塑造多云系外行星的红外光谱? JWST时代大气检索的理论框架和后果

How Does Thermal Scattering Shape the Infrared Spectra of Cloudy Exoplanets? A Theoretical Framework and Consequences for Atmospheric Retrievals in the JWST era

论文作者

Taylor, Jake, Parmentier, Vivien, Line, Michael R., Lee, Elspeth K. H., Irwin, Patrick G. J., Aigrain, Suzanne

论文摘要

系外行星的观察性研究暗示着云的无处不在。用于解释云的当前建模技术倾向于先验云凝结物种的知识,并且通常不考虑云的散射效应。我们通过建模一套热木星大气,并具有不同的云单散射反照率(SSAS)和温度曲线来探讨热散射对发射光谱的影响。我们检查了从简单的等温条件到更复杂的结构和物理驱动的云建模的案例。我们表明,如果散射不被散射,则夜间云的散射会导致比真实大气温度凉爽的亮度温度。我们表明,即使对于等温大气,散射也可以在发射光谱中产生光谱特征。我们确定在模拟JWST光谱的背景下出现的检索变性和偏见,当时云中的散射主导了光谱形状。最后,我们提出了一种使用不需要对云化学或物理性质的任何先验知识的技术,将云谱拟合在排放检索中的新方法。

Observational studies of exoplanets are suggestive of a ubiquitous presence of clouds. The current modelling techniques used in emission to account for the clouds tend to require prior knowledge of the cloud condensing species and often do not consider the scattering effects of the cloud. We explore the effects that thermal scattering has on the emission spectra by modelling a suite of hot Jupiter atmospheres with varying cloud single-scattering albedos (SSAs) and temperature profiles. We examine cases ranging from simple isothermal conditions to more complex structures and physically driven cloud modelling. We show that scattering from nightside clouds would lead to brightness temperatures that are cooler than the real atmospheric temperature if scattering is unaccounted for. We show that scattering can produce spectral signatures in the emission spectrum even for isothermal atmospheres. We identify the retrieval degeneracies and biases that arise in the context of simulated JWST spectra when the scattering from the clouds dominates the spectral shape. Finally, we propose a novel method of fitting the SSA spectrum of the cloud in emission retrievals, using a technique that does not require any prior knowledge of the cloud chemical or physical properties.

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