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Constraints of habitability for the young Earth in a highly eccentric orbit

机译:在高度偏心的轨道中对年轻地球的居民限制

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Thousands of planets outside the Solar system have been discovered, with exoplanets in different environments. Since we cannot expect to find an exoplanetary system fully resembling our Solar System, we consider a Solar System type configuration where the Earth moves in an eccentric orbit. We focus on young Earth 1 billion years ago, when the Sun's extreme UV (EUV) flux was about 5 times higher than the current radiation. In case of eccentric motion of Earth, strong variations of the EUV flux would influence the evolution of the planet's atmosphere (EUV radiation of 50 times the current EUV flux would be possible). Taking into account a certain amount of Nitrogen in the atmosphere of such a young Earth, we study the non-thermal loss of N2 over a long time interval. We therefore investigate to what extent eccentric motion will influence the conditions of habitability of a terrestrial planet.
机译:已经发现了太阳系以外的成千上万的行星,在不同的环境中具有外延网。 由于我们不能期望找到一个完全类似于我们太阳系的外部系统系统,我们考虑一个太阳能系统类型配置,地球在偏心轨道中移动。 当太阳的极端紫外线(EUV)通量比电流辐射高约5倍时,我们专注于16亿年前的年轻地球。 在地球偏心运动的情况下,EUV助焊剂的强大变化会影响地球大气的演变(EUV辐射的50倍当前EUV通量是可能的)。 考虑到这种年轻地球的气氛中的一定量的氮,我们在长时间间隔内研究了N2的非热损失。 因此,我们调查偏心运动的程度,影响陆地行星的居住地的条件。

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