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基于气体热逃逸的系外行星大气成分及其对宜居性的影响。

Atmospheric composition of exoplanets based on the thermal escape of gases and implications for habitability.

作者信息

Konatham Samuel, Martin-Torres Javier, Zorzano Maria-Paz

机构信息

Group of Atmospheric Science, Department of Computer Science, Electrical and Space Engineering, Luleå University of Technology, Luleå, Sweden.

Instituto Andaluz de Ciencias de la Tierra (CSIC-UGR), Armilla, Granada, Spain.

出版信息

Proc Math Phys Eng Sci. 2020 Sep;476(2241):20200148. doi: 10.1098/rspa.2020.0148. Epub 2020 Sep 9.

Abstract

The detection of habitable exoplanets is an exciting scientific and technical challenge. Owing to the current and most likely long-lasting impossibility of performing exploration of exoplanets, their study and hypotheses regarding their capability to host life will be based on the restricted low-resolution spatial and spectral information of their atmospheres. On the other hand, with the advent of the upcoming exoplanet survey missions and technological improvements, there is a need for preliminary discrimination that can prioritize potential candidates within the fast-growing list of exoplanets. Here we estimate, for the first time and using the kinetic theory of gases, a list of the possible atmospheric species that can be retained in the atmospheres of the known exoplanets. We conclude that, based on our current knowledge of the detected exoplanets, 45 of them are good candidates for habitability studies. These exoplanets could have Earth-like atmospheres and should be able to maintain stable liquid water. Our results suggest that the current definition of a habitable zone around a star should be revisited and that the capacity of the planet to host an Earth-like atmosphere to support the stability of liquid water should be added.

摘要

探测宜居系外行星是一项令人兴奋的科学和技术挑战。由于目前以及很可能在很长一段时间内都无法对系外行星进行实地探测,我们对它们的研究以及关于它们承载生命能力的假设将基于其大气层有限的低分辨率空间和光谱信息。另一方面,随着即将到来的系外行星勘测任务的出现和技术的改进,有必要进行初步筛选,以便在快速增长的系外行星列表中对潜在候选者进行优先级排序。在此,我们首次利用气体动力学理论估算了已知系外行星大气层中可能留存的大气成分列表。我们得出结论,基于我们目前对已探测到的系外行星的了解,其中45颗是宜居性研究的良好候选对象。这些系外行星可能拥有类似地球的大气层,并且应该能够维持稳定的液态水。我们的结果表明,目前关于恒星周围宜居带的定义应该重新审视,并且应该增加行星拥有类似地球大气层以支持液态水稳定性的能力这一因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cb7/7544335/87c47963dc70/rspa20200148-g1.jpg

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