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首页> 外文期刊>The Astrophysical journal >ATMOSPHERIC LOSS OF EXOPLANETS RESULTING FROM STELLAR X-RAY AND EXTREME-ULTRAVIOLET HEATING
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ATMOSPHERIC LOSS OF EXOPLANETS RESULTING FROM STELLAR X-RAY AND EXTREME-ULTRAVIOLET HEATING

机译:恒星X射线和极小动脉高压加热导致的葡萄球体大气损失

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Past studies addressing the thermal atmospheric escape of hydrogen from "hot Jupiters" have been based on the planet's effective temperature, which, as we show here, is not physically relevant for loss processes. In consequence, these studies led to significant underestimations of the atmospheric escape rate (≤10~3 g s~(-1)) and to the conclusion of long-term atmospheric stability. From more realistic exospheric temperatures, determined from X-ray and extreme-ultraviolet (XUV) irradiation and thermal conduction in the thermosphere, we find that energy-limited escape and atmospheric expansion arise, leading to much higher estimations for the loss rates (≈10~(12) g s~(-1)). These fluxes are in good agreement with recent determinations for HD 209458b based on observations of its extended exosphere. We also show that for young solar-type stars, which emit stronger XUV fluxes, the inferred loss rates are significantly higher. Thus, hydrogen-rich giant exoplanets under such strong XUV irradiances may evaporate down to their core sizes or shrink to levels at which heavier atmospheric constituents may prevent hydrodynamic escape. These results could explain the apparent paucity of exoplanets so far detected at orbital distances less than 0.04 AU.
机译:过去针对“热木星”中氢在大气中逸出的研究均基于行星的有效温度,正如我们在此处所示,这与损耗过程在物理上无关。结果,这些研究导致对大气逃逸率(≤10〜3 g s〜(-1))的低估,并得出了长期大气稳定的结论。从更现实的圈外温度(由X射线和极紫外(XUV)辐射以及热层中的热传导确定),我们发现能量受限的逸散和大气膨胀会出现,从而导致对损失率的估计更高(≈10 〜(12)gs〜(-1))。这些通量与HD 209458b的最新观测结果非常一致,基于HD 209458b扩大的外层观测。我们还表明,对于发出更强XUV通量的年轻太阳型恒星,推断的损失率明显更高。因此,在如此强的XUV辐照下,富含氢的巨型系外行星可能蒸发至其核心尺寸,或收缩至较重的大气成分可能阻止流体动力逸出的水平。这些结果可以解释迄今为止在不到0.04 AU的轨道距离上探测到的系外行星的明显缺乏。

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