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On the Origin of Dynamically Isolated Hot Earths

机译:关于动态孤立的热门地球的起源

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A distinct population of planetary systems that contain dynamically isolated, Earth-size planets with orbital periods P-orb similar to 1 day was recently identified in an analysis of data from the Kepler planet candidate catalog. We argue that these objects could represent the remnant rocky cores of giant planets that arrived at the stellar vicinity on high-eccentricity orbits and were rapidly stripped of their gaseous envelopes after crossing their respective Roche limits (RLs) a(R,p). In this picture, objects with P-orb greater than or similar to 1 day are mostly "early" cores that originated in planets with an initial periastron distance a(per,0) <= a(R,p); they had high initial eccentricities but their orbits underwent fast tidal circularization after the cores were exposed. Objects with P-orb less than or similar to 1 day are, by contrast, mostly "late" cores that originated in planets with a(per,0) > a(R,p); these planets underwent orbital circularization to a radius >a(per,0) but eventually reached a(R,p) through tidal orbital decay. This picture naturally accounts for the spatial distribution of hot Earths and for the similarity of their inferred occurrence rate to that of hot Jupiters, and it fits well with the interpretation of the so-called sub-Jovian desert in the orbital-period-planetary-mass plane in terms of high-eccentricity planet migration to the vicinity of the RL.
机译:最近鉴定了类似于1天的动态隔离,具有轨道周期的地球大小行星的行星系统的不同群体,类似于3天的分析来自开普勒行星候选目录的数据。我们认为这些物体可以代表巨型行星的残余岩石核心,该行星达到高偏心轨道上的恒星附近,并且在穿过各自的罗氏限制(RLS)A(R,P)后迅速剥离它们的气态包膜。在这张照片中,具有P-OTB的对象大于或类似于1天的物体主要是“早期”核心,起源于具有初始PeriaStron距离A(每,0)<= A(R,P)的行星的核心;它们具有高初始偏心,但在核心暴露后,它们的轨道接受了快速潮汐循环。对于较小或类似于1天的对象是相比之下,主要是“已故”核心,起源于(每,0)> A(R,P);这些行星接受了半径圆形圆形化的眶圆形化> a(0,0),但最终通过潮汐轨道衰减达到(r,p)。这张照片自然地占热地球的空间分布和他们推断出现率的相似性与热刺刀的相似性,并且它与轨道周期性的所谓的亚爪沙漠的解释很好 - 在高偏心行星迁移到RL附近的质量平面。

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