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首页> 外文期刊>The Astrophysical journal >THE INTERACTION OF VENUS-LIKE, M-DWARF PLANETS WITH THE STELLAR WIND OF THEIR HOST STAR
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THE INTERACTION OF VENUS-LIKE, M-DWARF PLANETS WITH THE STELLAR WIND OF THEIR HOST STAR

机译:像金星一样的M-DWARF行星与它们的恒星的星状风相互作用

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We study the interaction between the atmospheres of Venus-like, non-magnetized exoplanets orbiting an M-dwarf star, and the stellar wind using a multi-species MHD model. We focus our investigation on the effect of enhanced stellar wind and enhanced EUV flux as the planetary distance from the star decreases. Our simulations reveal different topologies of the planetary space environment for sub- and super-Alfvénic stellar wind conditions, which could lead to dynamic energy deposition into the atmosphere during the transition along the planetary orbit. We find that the stellar wind penetration for non-magnetized planets is very deep, up to a few hundreds of kilometers. We estimate a lower limit for the atmospheric mass-loss rate and find that it is insignificant over the lifetime of the planet. However, we predict that when accounting for atmospheric ion acceleration, a significant amount of the planetary atmosphere could be eroded over the course of a billion years.
机译:我们使用多物种MHD模型研究了围绕M矮星运行的类似金星的,未磁化的系外行星的大气与恒星风之间的相互作用。随着与恒星的行星距离减小,我们将重点放在增强恒星风和EUV通量的影响上。我们的模拟揭示了在亚阿尔弗涅式和超级阿尔弗涅式恒星风条件下行星空间环境的不同拓扑,这可能导致沿行星轨道过渡期间动态能量沉积到大气中。我们发现,非磁化行星的恒星穿透力非常深,可达数百公里。我们估算了大气质量损失率的下限,并发现在整个行星的生命周期中它是微不足道的。但是,我们预测,考虑到大气中的离子加速,在十亿年的时间内,可能会侵蚀大量的行星大气。

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