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The multiple planets transiting Kepler-9 - I. Inferring stellar properties and planetary compositions

机译:穿越Kepler-9的多颗行星-I.推断恒星性质和行星组成

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The discovery of multiple transiting planetary systems offers new possibilities for characterising exoplanets and understanding their formation. The Kepler-9 system contains two Saturn-mass planets, Kepler-9b and 9c. Using evolution models of gas giants that reproduce the sizes of known transiting planets and accounting for all sources of uncertainties, we show that Kepler-9b (respectively 9c) contains ?M⊕? (resp. ?M⊕) of hydrogen and helium and ?M⊕? (resp. ?M⊕) of heavy elements. More accurate constraints are obtained when comparing planets 9b and 9c: the ratio of the total mass fractions of heavy elements are Zb/Zc?=?1.02?±?0.14, indicating that, although the masses of the planets differ, their global composition is very similar, an unexpected result for formation models. Using evolution models for super-Earths, we find that Kepler-9d must contain less than 0.1% of its mass in hydrogen and helium and predict a mostly rocky structure with a total mass between 4 and 16?M⊕.
机译:多个过渡行星系统的发现为表征系外行星和了解其形成提供了新的可能性。开普勒9系统包含两个土星质量行星,开普勒9b和9c。利用重现已知过境行星大小并考虑所有不确定性来源的天然气巨头的演化模型,我们证明开普勒9b(分别为9c)包含?M⊕? (分别为?M⊕)氢和氦以及?M⊕? (分别为?M⊕)重元素。比较行星9b和9c时,可获得更精确的约束条件:重元素的总质量分数之比为Zb /Zcθ=?1.02?±?0.14,这表明,尽管行星的质量不同,但它们的整体组成为非常相似,对于编队模型来说是出乎意料的结果。利用超地球的演化模型,我们发现开普勒9d的氢和氦含量必须少于其质量的0.1%,并预测一个总质量在4至16?M⊕之间的岩石结构。

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