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首页> 外文期刊>The Astrophysical Journal. Letters >The Threatening Magnetic and Plasma Environment of the TRAPPIST-1 Planets
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The Threatening Magnetic and Plasma Environment of the TRAPPIST-1 Planets

机译:拉蜂主-1行星的威胁磁性和等离子环境

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摘要

Recently, four additional Earth-mass planets were discovered orbiting the nearby ultracool M8 dwarf, TRAPPIST-1, making a remarkable total of seven planets with equilibrium temperatures compatible with the presence of liquid water on their surface. Temperate terrestrial planets around an M-dwarf orbit close to their parent star, rendering their atmospheres vulnerable to erosion by the stellar wind and energetic electromagnetic and particle radiation. Here, we use state-of-the-art 3D magnetohydrodynamic models to simulate the wind around TRAPPIST-1 and study the conditions at each planetary orbit. All planets experience a stellar wind pressure between 103 and 105 times the solar wind pressure on Earth. All orbits pass through wind pressure changes of an order of magnitude and most planets spend a large fraction of their orbital period in the sub-Alfvenic regime. For plausible planetary magnetic field strengths, all magnetospheres are greatly compressed and undergo much more dynamic change than that of the Earth. The planetary magnetic fields connect with the stellar radial field over much of the planetary surface, allowing the direct flow of stellar wind particles onto the planetary atmosphere. These conditions could result in strong atmospheric stripping and evaporation and should be taken into account for any realistic assessment of the evolution and habitability of the TRAPPIST-1 planets.
机译:最近,在附近的Ultracool M8矮人,Trappist-1中发现了四个额外的地球群集行星,使得总共七个行星具有与其表面上液态水的存在相容的平衡温度。温带围绕着父母明星的M-Dwarf轨道的温带地球,使他们的环境易受恒星风和精力充沛的电磁和粒子辐射侵蚀。在这里,我们使用最先进的3D磁力流体模型来模拟Trappist-1周围的风,并研究每个行星轨道的条件。所有行星都经历了地球上太阳风压的103到105倍的恒星风压。所有轨道通过风压变化的数量级,大多数行星在亚空不汶制度中花费大量的轨道周期。对于合理的行星磁场强度,所有磁体都会大大压缩并经历比地球的动态变化更大。行星磁场在大部分行星表面上与恒星径向场连接,允许恒星风颗粒的直接流动到行星大气中。这些条件可能导致强大的大气剥离和蒸发,并应考虑到捕手-1行星的进化和居住性的任何现实评估。

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