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Hot super-Earths stripped by their host stars

机译:超级地球被其寄宿星剥夺

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Simulations predict that hot super-Earth sized exoplanets can have their envelopes stripped by photoevaporation, which would present itself as a lack of these exoplanets. However, this absence in the exoplanet population has escaped a firm detection. Here we demonstrate, using asteroseismology on a sample of exoplanets and exoplanet candidates observed during the Kepler mission that, while there is an abundance of super-Earth sized exoplanets with low incident fluxes, none are found with high incident fluxes. We do not find any exoplanets with radii between 2.2 and 3.8 Earth radii with incident flux above 650 times the incident flux on Earth. This gap in the population of exoplanets is explained by evaporation of volatile elements and thus supports the predictions. The confirmation of a hot-super-Earth desert caused by evaporation will add an important constraint on simulations of planetary systems, since they must be able to reproduce the dearth of close-in super-Earths.
机译:模拟预测,超地球大小的热系外行星可能会因光蒸发而剥去其外壳,这将使自身缺乏这些系外行星。但是,系外行星种群中的这种缺失已无法确定。在这里,我们使用星震学对开普勒任务期间​​观测到的系外行星和系外行星样本进行了证明,尽管存在大量具有低入射通量的超地球大小系外行星,但没有发现高入射通量的行星。我们找不到任何半径在2.2至3.8地球半径之间的系外行星,其入射通量大于地球入射通量的650倍。系外行星种群中的这一缺口可以通过挥发性元素的蒸发来解释,因此可以支持这一预测。蒸发引起的超级地球沙漠的确认将对行星系统的模拟增加重要的限制,因为它们必须能够再现近距离超地球的缺乏。

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