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HABITABILITY OF EARTH-MASS PLANETS AND MOONS IN THE KEPLER-16 SYSTEM

机译:KEPLER-16系统中地球质量行星和月亮的适应性

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We demonstrate that habitable Earth-mass planets and moons can exist in the Kepler-16 system, known to host a Saturn-mass planet around a stellar binary, by investigating their orbital stability in the standard and extended habitable zone (HZ). We find that Earth-mass planets in satellite-like (S-type) orbits are possible within the standard HZ in direct vicinity of Kepler-16b, thus constituting habitable exomoons. However, Earth-mass planets cannot exist in planetary-like (P-type) orbits around the two stellar components within the standard HZ. Yet, P-type Earth-mass planets can exist superior to the Saturnian planet in the extended HZ pertaining to considerably enhanced back-warming in the planetary atmosphere if facilitated. We briefly discuss the potential detectability of such habitable Earth-mass moons and planets positioned in satellite and planetary orbits, respectively. The range of inferior and superior P-type orbits in the HZ is between 0.657-0.71?AU and 0.95-1.02?AU, respectively.
机译:我们通过研究标准和扩展可居住区(HZ)的轨道稳定性,证明了可居住的地球质量行星和卫星可以存在于开普勒16系统中,该系统以围绕恒星双星的方式承载土星质量行星。我们发现,在开普勒16b紧邻的标准HZ范围内,卫星状(S型)轨道上的地球质量行星是可能的,因此构成了可居住的外显子。但是,在标准HZ的两个恒星组件周围,行星质量的行星不能以行星状(P型)轨道存在。但是,在便利的情况下,P型地球质量行星可以在扩展的HZ中存在优于土星的行星,这与行星大气中的回暖显着增强有关。我们简要讨论了分别位于卫星和行星轨道上的这种宜居的地球质量卫星和行星的潜在可探测性。 HZ的下P型轨道和上P型轨道的范围分别在0.657-0.71?AU和0.95-1.02?AU之间。

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