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首页> 外文期刊>Solar system research >Hydrogen-dominated upper atmosphere of an exoplanet: Heating by stellar radiation from soft X-rays to extreme ultraviolet
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Hydrogen-dominated upper atmosphere of an exoplanet: Heating by stellar radiation from soft X-rays to extreme ultraviolet

机译:系外行星以氢为主的上层大气:由软X射线到极紫外的恒星辐射加热

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摘要

A study is presented of how the upper atmosphere of a planet is heated by extreme radiation from the parent star, depending on the distribution of the radiation flux in the soft X-ray and extreme ultraviolet (EUV) ranges. Calculations are performed to find the efficiency of heating by stellar X-ray to EUV radiation in a hydrogen-dominated upper atmosphere for the extrasolar gas giant HD 209458b. It is shown that heating efficiency by extreme stellar UV radiation in a hydrogen-dominated upper atmosphere does not exceed 20-25% at the main thermospheric heights given that the calculation takes into account the photoelectron impact. It is found that an increase in the X-ray flux by several orders of magnitude leads to a slight decrease in the heating efficiency.
机译:根据软X射线和极紫外(EUV)范围内辐射通量的分布,研究了行星的高层大气如何被来自母恒星的极端辐射加热的方法。进行计算以发现恒星X射线在氢占主导的高层大气中通过恒星X射线加热到EUV辐射的效率,用于太阳系外气体巨人HD 209458b。结果表明,考虑到光电子的影响,在主要的热层高度,氢占主导的高层大气中极端恒星紫外线辐射的加热效率不超过20-25%。发现X射线通量增加几个数量级导致加热效率略有下降。

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