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Physical constraints on the likelihood of life on exoplanets

机译:对外产上生命的可能性的身体制约因素

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One of the most fundamental questions in exoplanetology is to determine whether a given planet is habitable. We estimate the relative likelihood of a planet's propensity towards habitability by considering key physical characteristics such as the role of temperature on ecological and evolutionary processes, and atmospheric losses via hydrodynamic escape and stellar wind erosion. From our analysis, we demonstrate that Earth-sized exoplanets in the habitable zone around M-dwarfs seemingly display much lower prospects of being habitable relative to Earth, owing to the higher incident ultraviolet fluxes and closer distances to the host star. We illustrate our results by specifically computing the likelihood (of supporting life) for the recently discovered exoplanets, Proxima b and TRAPPIST-1e, which we find to be several orders of magnitude smaller than that of Earth.
机译:外部外营学中最基本的问题之一是确定给定的星球是否可居住。 通过考虑诸如温度的角色对生态和进化过程的作用,以及通过流体动力学逃逸和恒星风腐蚀,我们估计行星对居住能力倾向的相对可能性。 从我们的分析来看,我们证明,由于紫外线偏差更高的紫外线和宿主明星的距离更高的紫外线和更近距离,因此围绕M-DWARFS的地球大小的外表似乎展示了与地球有可居住的前景。 我们通过专门计算最近被发现的外产的外产的可能性(支持生命),Proxima B和Trappist-1e的可能性(支持生命)来说明我们的结果,我们发现是比地球的几个数量级的数量级。

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