论文标题

M-warf耀斑对潜在可居住行星大气的热逃逸的贡献

The Contribution of M-Dwarf Flares to the Thermal Escape of Potentially Habitable Planet Atmospheres

论文作者

Amaral, Laura Neves Ribeiro do, Barnes, Rory, Segura, Antígona, Luger, Rodrigo

论文摘要

M矮人周围的行星的可居住性($ \ Lessim 0.5 m_ \ odot $)可能会受到这些恒星的XUV(X Rays + Extreme UV)排放的影响,而Flares偶尔会增加Xuv的Flux超过2个数量级以上的静态水平。该波长范围可以使地球上层的大气层温暖和电离,从而扩大行星半径并促进大气损失。在这项工作中,我们通过数值模拟研究了由于耀斑对地球样行星大气逃逸而逃逸的XUV通量的贡献。我们考虑了第一个具有初始地表水丰度在1到10个地面海洋之间的行星(TO),这是一个小的原始氢信封($ \ le $ $ $ $ $ 10^{ - 3} $〜$〜$〜$ m _ {\ oplus} $),宿主星质量为0.2至0.2至0.2至0.6 $ _ m _ _ _ _ {\ odot} $。在此参数范围内,我们发现耀斑最多可以删除多达两到非恒星的恒星,在某些情况下,这可以翻译成总水损失的一倍。我们还发现,在某些情况下,燃烧会使大气中的氧气部分压力增加数百条。这些结果是通过在\ vplanet软件包中添加新的耀斑模块并升级其大气逃生模块,以说明Roche Lobe溢出和辐射/重组限制的逃生,从而获得了这些结果。

The habitability of planets around M dwarfs ($\lesssim 0.5 M_\odot$) can be affected by the XUV (X rays + extreme UV) emission of these stars, with flares occasionally increasing the XUV flux by more than 2 orders of magnitude above quiescent levels. This wavelength range can warm and ionize terrestrial planets' upper atmospheres, which expands the planetary radius and promotes atmospheric loss. In this work, we study the contribution of the XUV flux due to flares on the atmospheric escape of Earth-like planets orbiting M dwarfs through numerical simulations. We considered the first Gyr of planets with initial surface water abundances between 1 and 10 terrestrial oceans (TO), a small primordial hydrogen envelope ($\le$ $10^{-3}$~$M_{\oplus}$), and with host star masses between 0.2 and 0.6 $M_{\odot}$. In this parameter range, we find that flares can remove up to two TO more than nonflaring stars, which, in some cases, translates to a doubling of the total water loss. We also find that flaring can increase atmospheric oxygen partial pressures by hundreds of bars in some cases. These results were obtained by adding a new module for flares to the \vplanet software package and upgrading its atmospheric escape module to account for Roche lobe overflow and radiation/recombination-limited escape.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源