Coupled day–night models of exoplanetary atmospheres

S. Gandhi, A. Jermyn
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引用次数: 5

Abstract

We provide a new framework to model the day side and night side atmospheres of irradiated exoplanets using 1-D radiative transfer by incorporating a self-consistent heat flux carried by circulation currents (winds) between the two sides. The advantages of our model are its physical motivation and computational efficiency, which allows for an exploration of a wide range of atmospheric parameters. We use this forward model to explore the day and night side atmosphere of WASP-76~b, an ultra-hot Jupiter which shows evidence for a thermal inversion and Fe condensation, and WASP-43~b, comparing our model against high precision phase curves and general circulation models. We are able to closely match the observations as well as prior theoretical predictions for both of these planets with our model. We also model a range of hot Jupiters with equilibrium temperatures between 1000-3000~K and reproduce the observed trend that the day-night temperature contrast increases with equilibrium temperature up to $\sim$2500~K beyond which the dissociation of H$_2$ becomes significant and the relative temperature difference declines.
系外行星大气的昼夜耦合模型
我们提供了一个新的框架,通过结合双方环流(风)携带的自一致热通量,利用一维辐射传输来模拟受辐射系外行星的昼侧和夜侧大气。我们的模型的优点是它的物理动机和计算效率,它允许探索大范围的大气参数。我们利用该正演模型对WASP-76~b和WASP-43~b的昼夜大气进行了研究,并将该模型与高精度相位曲线和一般环流模型进行了比较。WASP-76~b是一颗具有热逆温和铁凝聚证据的超热木星。我们能够将观测结果以及先前对这两颗行星的理论预测与我们的模型紧密匹配。我们还模拟了平衡温度在1000 ~ 3000~K之间的热木星,重现了观测到的昼夜温差随着平衡温度达到2500~K而增大的趋势,超过2500~K, H$_2$解离变得明显,相对温差减小。
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