论文标题

金星作为外部球星:I。对Co $ _ {2} $ exoplanetary Actershare M-dwarf Star周围的3-D能量平衡的初步探索

Venus as an Exoplanet: I. An Initial Exploration of the 3-D Energy Balance for a CO$_{2}$ Exoplanetary Atmosphere Around an M-Dwarf Star

论文作者

Parkinson, Christopher D., Bougher, Stephen W., Mills, Franklin P., Brecht, Amanda, Li, James, Yung, Yuk L., Hu, Renyu, Gronoff, Guillaume

论文摘要

超级金星样大气的化学演化取决于紫外线的紫外线(Fuv-nuv)辐射率,来自母星,通过反应和重新组合通过反应的CO $ _ {2} $ spotions之间的平衡,这些反应依赖于水的丰富度,以及各种催化化学循环。在这项研究中,我们使用三维(3-D)模型来模拟金星样系外星线的条件,通过改变恒星/行星距离,并考虑对加热/冷却和动力学的影响,从而绕着M-Dwarf型星GJ 436绕着M-Dwarf Type GJ 436进行模拟条件。模拟包括中层和上层大气(<40 mbar)。总体而言,这些模型的比较表明,极端紫外线对紫外线(EUV-UV)加热对能量平衡的影响表明,辐射和动态过程既导致占地裂地风和全球温度曲线的显着变化,<10 $^{-5} $ MBAR。更具体地说,Co $ _ {2} $ 15- $ $ m $ m冷却余额EUV/UV和接近红外(NIR)在10 $^{ - 7} $ MBAR压力下的高度供暖,并在〜10 $^{-5} $ MBAR上的最大压力平衡,从而解释了5 $ able invariance of the Invariance fors fors fors fors after fors fors fors fors after fors fors fors fors after fors after fors after fors fors after fors fors after fors fors after fors fors after fors。案例。我们的模型比较还表明,NIR加热的中等变化导致上层大气中中性温度的相对较小的变化,几乎没有变化。但是,随着NIR加热剖面的较大变化,在研究的整个上层和中间大气中,中性温度发生了更大的变化。

The chemical evolution of an exoplanetary Venus-like atmosphere is dependent upon the ultraviolet to near ultraviolet (FUV-NUV) radiation ratio from the parent star, the balance between CO$_{2}$ photolysis and recombination via reactions that depend on the water abundance, and various catalytic chemical cycles. In this study, we use a three-dimensional (3-D) model to simulate conditions for a Venus-like exoplanet orbiting the M-dwarf type star GJ 436 by varying the star/planet distance and considering the resultant effects on heating/cooling and dynamics. The simulation includes the middle and upper atmosphere (<40 mbar). Overall, these model comparisons reveal that the impact of extreme ultraviolet to ultraviolet (EUV-UV) heating on the energy balance shows both radiative and dynamical processes are responsible for driving significant variations in zonal winds and global temperature profiles at < 10$^{-5}$ mbar. More specifically, CO$_{2}$ 15-$μ$m cooling balances EUV/UV and Near InfraRed (NIR) heating at altitudes below 10$^{-7}$ mbar pressure with a strong maximum balance for pressures at ~10$^{-5}$ mbar, thus explaining the invariance of the temperature distribution at altitudes below 10$^{-5}$mbar pressure for all cases. Our model comparisons also show that moderate changes in NIR heating result in relatively small changes in neutral temperature in the upper atmosphere, and virtually no change in the middle atmosphere. However, with larger changes in the NIR heating profile, much greater changes in neutral temperature occur in the entire upper and middle atmosphere studied.

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