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首页> 外文期刊>The Astrophysical journal >AB INITIO EQUATION OF STATE FOR HYDROGEN-HELIUM MIXTURES WITH RECALIBRATION OF THE GIANT-PLANET MASS-RADIUS RELATION
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AB INITIO EQUATION OF STATE FOR HYDROGEN-HELIUM MIXTURES WITH RECALIBRATION OF THE GIANT-PLANET MASS-RADIUS RELATION

机译:氢-氦混合物的态态从头算式的重新定型,证明了巨行星-质量-半径关系

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Using density functional molecular dynamics simulations, we determine the equation of state (EOS) for hydrogen-helium mixtures spanning density-temperature conditions typical of giant-planet interiors, ~0.2-9?g?cm–3 and 1000-80,000?K for a typical helium mass fraction of 0.245. In addition to computing internal energy and pressure, we determine the entropy using an ab initio thermodynamic integration technique. A comprehensive EOS table with 391 density-temperature points is constructed and the results are presented in the form of a two-dimensional free energy fit for interpolation. Deviations between our ab initio EOS and the semi-analytical EOS model by Saumon and Chabrier are analyzed in detail, and we use the results for initial revision of the inferred thermal state of giant planets with known values for mass and radius. Changes are most pronounced for planets in the Jupiter mass range and below. We present a revision to the mass-radius relationship that makes the hottest exoplanets increase in radius by ~0.2 Jupiter radii at fixed entropy and for masses greater than ~0.5 Jupiter mass. This change is large enough to have possible implications for some discrepant "inflated giant exoplanets."
机译:使用密度泛函分子动力学模拟,我们确定了氢-氦混合物的状态方程(EOS),其跨越巨型行星内部典型的密度-温度条件,约为0.2-9?g?cm-3和1000-80,000?K。典型的氦气质量分数为0.245。除了计算内部能量和压力外,我们还使用从头算热力学积分技术确定熵。构建了一个具有391个密度-温度点的综合EOS表,并以二维自由能拟合的形式表示了结果。详细分析了我们的从头算起的EOS与Saumon和Chabrier进行的半解析EOS模型之间的偏差,并将结果用于质量和半径已知值的巨型行星的推断热态的初始修正。对于木星质量范围及以下的行星,变化最为明显。我们对质量半径关系进行了修订,使最热的系外行星在固定熵和大于〜0.5木星质量的情况下,半径增加了〜0.2 Jupiter半径。这一变化足够大,可能会对某些差异化的“膨胀的巨型系外行星”产生影响。

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