论文标题

LHS 3844b的挥发性贫困形成,基于其缺乏大气

A Volatile-Poor Formation of LHS 3844b based on its Lack of Significant Atmosphere

论文作者

Kane, Stephen R., Roettenbacher, Rachael M., Unterborn, Cayman T., Foley, Bradford J., Hill, Michelle L.

论文摘要

系外行星的发现已经进入了陆地行星的境界,这些行星正成为大气研究的主题。这样的发现是LHS 3844b,这是一个1.3的地球半径行星,在M4.5-5矮星星周围的0.46天轨道中。后续观察结果表明,地球在很大程度上没有大气。这种缺乏大气的大气使天体物理和地球物理限制在LHS 3844b上,主要是挥发性的高气和大气侵蚀速率。我们估计,寄主之星的年龄为$ 7.8 \ pm1.6 $ gyrs,并找到了与Proxima Centauri相当的活跃过去的证据。我们使用火山过气和大气侵蚀的地球动力学模型,以表明明显缺乏大气与LHS 3844b的挥发性贫困地幔是一致的。我们表明,除非散装行星相对于地球,否则核心不太可能托管足够的C来产生足够挥发性的势地幔。尽管我们不能排除巨大的撞击LHS 3844b的大气,但我们表明这种机制将需要大量的地幔剥离,有可能将LHS 3844B作为Fe-Fe-Fe-Fe-Fe-FeR-fe的“ Super-Mercury”。可能会受到较小影响的大气侵蚀,但前提是地球已经开始脱气并且受到半径为500-1000公里的$ 10^3 $撞击器的轰炸。我们讨论了可能解释不良起源的形成和迁移情景,包括可能存在未观察到的巨大伴侣行星的潜力。 LHS 3844b的相对易于挥发的贫困组成表明,行星是系统雪线内部的。

Exoplanet discoveries have reached into the realm of terrestrial planets that are becoming the subject of atmospheric studies. One such discovery is LHS 3844b, a 1.3 Earth radius planet in a 0.46 day orbit around an M4.5-5 dwarf star. Follow-up observations indicate that the planet is largely devoid of substantial atmosphere. This lack of significant atmosphere places astrophysical and geophysical constraints on LHS 3844b, primarily the degree of volatile outgassing and the rate of atmosphere erosion. We estimate the age of the host star as $7.8\pm1.6$ Gyrs and find evidence of an active past comparable to Proxima Centauri. We use geodynamical models of volcanic outgassing and atmospheric erosion to show that the apparent lack of atmosphere is consistent with a volatile-poor mantle for LHS 3844b. We show the core is unlikely to host enough C to produce a sufficiently volatile-poor mantle, unless the bulk planet is volatile-poor relative to Earth. While we cannot rule out a giant impact stripping LHS 3844b's atmosphere, we show this mechanism would require significant mantle stripping, potentially leaving LHS 3844b as an Fe-rich "super-Mercury". Atmospheric erosion by smaller impacts is possible, but only if the planet has already begun degassing and is bombarded by $10^3$ impactors of radius 500-1000 km traveling at escape velocity. We discuss formation and migration scenarios that could account for a volatile poor origin, including the potential for an unobserved massive companion planet. A relatively volatile-poor composition of LHS 3844b suggests that the planet formed interior to the system snow-line.

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