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Thermal escape from extrasolar giant planets

机译:太阳系外行星的热逸出

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摘要

The detection of hot atomic hydrogen and heavy atoms and ions at high altitudes around close-in extrasolar giant planets (EGPs) such as HD209458b implies that these planets have hot and rapidly escaping atmospheres that extend to several planetary radii. These characteristics, however, cannot be generalized to all close-in EGPs. The thermal escape mechanism and mass loss rate from EGPs depend on a complex interplay between photochemistry and radiative transfer driven by the stellar UV radiation. In this study, we explore how these processes change under different levels of irradiation on giant planets with different characteristics. We confirm that there are two distinct regimes of thermal escape from EGPs, and that the transition between these regimes is relatively sharp. Our results have implications for thermal mass loss rates from different EGPs that we discuss in the context of currently known planets and the detectability of their upper atmospheres.
机译:在诸如HD209458b之类的近太阳外巨型行星(EGP)附近的高空检测到热原子氢以及重原子和离子,这意味着这些行星具有热的并且迅速逃逸的大气层,并延伸到几个行星半径。但是,这些特征不能推广到所有近距离的EGP。 EGP的热逃逸机理和质量损失率取决于恒星紫外线辐射驱动的光化学与辐射传递之间的复杂相互作用。在这项研究中,我们探索在具有不同特征的巨型行星上,在不同辐射水平下这些过程如何变化。我们确认,有两种截然不同的从EGP逃逸的状态,并且这些状态之间的过渡相对尖锐。我们的结果对我们在当前已知的行星及其高层大气的可探测性范围内讨论的不同EGP的热质量损失率具有影响。

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