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The Roche Limit for Close-orbiting Planets: Minimum Density, Composition Constraints, and Application to the 4.2 hr Planet KOI 1843.03

机译:罗氏近轨道行星极限:最小密度,组成约束以及对4.2小时行星KOI 1843.03的应用

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摘要

The requirement that a planet must orbit outside of its Roche limit gives a lower limit on the planet's mean density. The minimum density depends almost entirely on the orbital period and is immune to systematic errors in the stellar properties. We consider the implications of this density constraint for the newly identified class of small planets with periods shorter than half a day. When the planet's radius is accurately known, this lower limit to the density can be used to restrict the possible combinations of iron and rock within the planet. Applied to KOI 1843.03, a 0.6 R⊕ planet with the shortest known orbital period of 4.245 hr, the planet's mean density must be ≳7 g cm^(–3). By modeling the planetary interior subject to this constraint, we find that the composition of the planet must be mostly iron, with at most a modest fraction of silicates (≾30% by mass).
机译:行星必须绕其罗氏极限运行的要求给出了行星平均密度的下限。最小密度几乎完全取决于轨道周期,并且不受恒星特性系统误差的影响。我们考虑到这种密度约束对于新近确定的周期小于半天的小行星类别的影响。当精确地知道了行星的半径时,可以使用密度的下限来限制行星中铁和岩石的可能组合。将其应用于KOI 1843.03(0.6R⊕的行星,已知的最短轨道周期为4.245 hr)时,该行星的平均密度必须为≳7g cm ^(– 3)。通过对受此约束的行星内部建模,我们发现行星的组成必须主要是铁,最多含适量的硅酸盐(质量百分比约为30%)。

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