论文标题

始终使用灵活的辐射转移模块模拟K2-18B的各种大气场景

Consistently Simulating a Wide Range of Atmospheric Scenarios for K2-18b with a Flexible Radiative Transfer Module

论文作者

Scheucher, M., Wunderlich, F., Grenfell, J. L., Godolt, M., Schreier, F., Kappel, D., Haus, R., Herbst, K., Rauer, H.

论文摘要

预计小的,潜在的岩石系外行星的大气将覆盖成分和质量的多样化范围。因此,研究此类物体需要灵活而广泛的建模功能。我们在这项工作中介绍了基本的开发步骤,从而导致我们的柔性辐射传输模块,Redfox和验证Redfox的太阳系行星,地球,金星和火星以及蒸汽气氛。 Redfox是使用相关-K方法采用随机重叠方法的K-Distribution模型,用于计算$δ$ -two-tream-stream-stream近似辐射传递中使用的不相差。可以选择性地添加瑞利散射,紫外线 /可见横截面和连续图的不透明度贡献。随着我们新型号的提高功能,我们计算了K2-18B的各种大气场景,K2-18B是一种超级获得 /近期的$ \ sim $ \ sim $ 8 m $ _ $ _ \ oplus $ oplus $ oplus $在M-Star周围的温带区域,最近观察到的h $ _2 $ o _2 $ o spectral in Indrarared中的光谱特征。与观察到的数据相比,我们对不同太阳金属性的主要大气层进行了模型,以及H $ _2 $ - 他的主要气氛,并显示出所得的气候和光谱特征。我们的结果表明,K2-18B的h $ _2 $ - 他的气氛有限,h $ _2 $ o和ch $ _4 $。结果不支持将水库直接暴露于大气的可能性,这将降低大气规模的高度,因此光谱特征的幅度也与观测值不一致。我们还对H $ _2 $ - 他的气氛进行了高达50倍太阳金属性的测试,这与观察值兼容。

The atmospheres of small, potentially rocky exoplanets are expected to cover a diverse range in composition and mass. Studying such objects therefore requires flexible and wide-ranging modeling capabilities. We present in this work the essential development steps that lead to our flexible radiative transfer module, REDFOX, and validate REDFOX for the Solar system planets Earth, Venus and Mars, as well as for steam atmospheres. REDFOX is a k-distribution model using the correlated-k approach with random overlap method for the calculation of opacities used in the $δ$-two-stream approximation for radiative transfer. Opacity contributions from Rayleigh scattering, UV / visible cross sections and continua can be added selectively. With the improved capabilities of our new model, we calculate various atmospheric scenarios for K2-18b, a super-Earth / sub-Neptune with $\sim$8 M$_\oplus$ orbiting in the temperate zone around an M-star, with recently observed H$_2$O spectral features in the infrared. We model Earth-like, Venus-like, as well as H$_2$-He primary atmospheres of different Solar metallicity and show resulting climates and spectral characteristics, compared to observed data. Our results suggest that K2-18b has an H$_2$-He atmosphere with limited amounts of H$_2$O and CH$_4$. Results do not support the possibility of K2-18b having a water reservoir directly exposed to the atmosphere, which would reduce atmospheric scale heights, hence too the amplitudes of spectral features inconsistent with the observations. We also performed tests for H$_2$-He atmospheres up to 50 times Solar metallicity, all compatible with the observations.

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