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Climate Model Studies of Synchronously Rotating Planets

机译:同步旋转行星的气候模型研究

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M stars constitute 75% of main sequence stars though, until recently, their star systems have not been considered suitable places for habitable planets to exist. In this study the climate of a synchronously rotating planet around an M dwarf star is evaluated using a three-dimensional global atmospheric circulation model. The presence of clouds and evaporative cooling at the surface of the planet result in a cooler surface temperature at the subsolar point. Water ice forms at the polar regions and on the dark side, where the minimum temperature lies between -30 ℃ and 0 ℃. As expected, rainfall is extremely high on the starlit side and extremely low on the dark side. The presence of a dry continent causes higher temperatures on the dayside, and allows accumulation of snow on the nightside. The absence of any oceans leads to higher day-night temperature differences, consistent with previous work. The present study reinforces recent conclusions that synchronously rotating planets within the circumstellar habitable zones of M dwarf stars should be habitable, and therefore M dwarf systems should not be excluded in future searches for exoplanets.
机译:M恒星构成主要序列恒星的75%,但是直到最近,它们的恒星系统还没有被认为是可居住星球存在的合适场所。在这项研究中,使用三维全球大气环流模型评估了M矮星周围同步旋转行星的气候。行星表面的云层和蒸发冷却的存在导致亚太阳点的表面温度较低。水冰在极地和暗面形成,最低温度在-30℃和0℃之间。不出所料,星光一侧的降雨量极高,而黑暗一侧的降雨量极低。干燥大陆的存在导致白天的温度升高,并在夜间积雪。与以前的工作一致,没有海洋会导致更高的昼夜温差。本研究进一步证实了最近得出的结论,即在M矮星的星际可居住区域内同步旋转的行星应该是可居住的,因此在将来寻找系外行星时不应将M矮系统排除在外。

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