论文标题
proxima centauri c的类似地球的恒星风环境
An Earth-like stellar wind environment for Proxima Centauri c
论文作者
论文摘要
最近在Proxima Centauri周围发现了一个新星球。对于$ \ sim $$ 1.44 $ au的轨道分离,最低质量约为$ 7 $ $ m _ {\ oplus} $,Proxima C是大气表征的主要直接成像目标。后者只能对地球的太空环境有很好的了解,因为多个过程可以对大气结构和进化产生深远的影响。在这里,我们通过在Proxima的恒星风中生成物理真实的数值模拟,朝着这个方向迈出了一步,该模拟与Proxima c周围的磁层和电离层模型耦合。我们评估了由于宿主恒星的磁性周期以及外部外行轨道的合理倾斜角而导致的预期变化。我们的结果表明,在恒星的高活动期间,恒星风力动态压力与当今的地球相当,略有增加(倍数为2)。在近距离C距离处的一个相对较弱的星际磁场导致高层大气中的恒星风焦焦耳加热(大约$ 10 \%的太阳能在地球上贡献的$ 10 \%$),对于地球状的行星磁场($ 0.3 $ g)。最后,我们对系外行星候选人D的可能极端条件进行评估,暂定位于$ 0.029 $ au,最低质量为$ 0.29 $ $ M _ {\ oplus} $。
A new planet has been recently discovered around Proxima Centauri. With an orbital separation of $\sim$$1.44$ au and a minimum mass of about $7$ $M_{\oplus}$, Proxima c is a prime direct imaging target for atmospheric characterization. The latter can only be performed with a good understanding of the space environment of the planet, as multiple processes can have profound effects on the atmospheric structure and evolution. Here, we take one step in this direction by generating physically-realistic numerical simulations of Proxima's stellar wind, coupled to a magnetosphere and ionosphere model around Proxima c. We evaluate their expected variation due to the magnetic cycle of the host star, as well as for plausible inclination angles for the exoplanet orbit. Our results indicate stellar wind dynamic pressures comparable to present-day Earth, with a slight increase (by a factor of 2) during high activity periods of the star. A relatively weak interplanetary magnetic field at the distance of Proxima c leads to negligible stellar wind Joule heating of the upper atmosphere (about $10\%$ of the solar wind contribution on Earth) for an Earth-like planetary magnetic field ($0.3$ G). Finally, we provide an assessment of the likely extreme conditions experienced by the exoplanet candidate Proxima d, tentatively located at $0.029$ au with a minimum mass of $0.29$ $M_{\oplus}$.