论文标题

通量变化对地面圆形行星表面温度的影响

Effects of Flux Variation on the Surface Temperatures of Earth-like Circumbinary Planets

论文作者

Yadavalli, Srisurya Karthik, Quarles, Billy, Li, Gongjie, Haghighipour, Nader

论文摘要

开普勒太空望远镜已经发现了大约13个环形行星(CBP),这些行星(CBP)绕着一对恒星,体验了两种恒星通量的来源。我们表征了大气顶通量和表面温度演变,相对于中央二进制恒星和类似地球的CBP类似物之间的轨道短期动力学。我们将类似地球的CBP的通量和表面温度与等效的单星(ESS)系统的差异演变进行比较,以揭示地球的潜在宜居性可能变化的程度。对于类似太阳的主要原则,我们发现当G-K光谱二进制的动力学比率为〜0.3时,单个行星轨道上的通量变化最大。使用纬度能量平衡模型,我们表明,由于通量重新分布(通过倾斜)与总通量变化(通过二进制循环)之间的相互作用,冰 - 阿尔贝托的反馈在类似地球的CBP可居住性中起着重要作用。我们研究了易常区域CBP(4个开普勒和1个假设系统)的地球样类似物的通量和表面温度的差异演化,并发现这些类似物通常比其ESS对应物温暖。

The Kepler Space telescope has uncovered around thirteen circumbinary planets (CBPs) that orbit a pair of stars and experience two sources of stellar flux. We characterize the top-of-atmosphere flux and surface temperature evolution in relation to the orbital short-term dynamics between the central binary star and an Earth-like CBP analog. We compare the differential evolution of an Earth-like CBP's flux and surface temperature with that of an equivalent single-star (ESS) system to uncover the degree by which the potential habitability of the planet could vary. For a Sun-like primary, we find that the flux variation over a single planetary orbit is greatest when the dynamical mass ratio is ~0.3 for a G-K spectral binary. Using a latitudinal energy balance model, we show that the ice-albedo feedback plays a substantial role in Earth-like CBP habitability due to the interplay between flux redistribution (via obliquity) and changes in the total flux (via binary gyration). We examine the differential evolution of flux and surface temperature for Earth-like analogs of the habitable zone CBPs (4 Kepler and 1 hypothetical system) and find that these analogs are typically warmer than their ESS counterparts.

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