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Phase Separation In Hydrogen-helium Mixtures At Mbar Pressures

机译:Mbar压力下氢氦混合物的相分离

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The properties of hydrogen-helium mixtures at Mbar pressures and intermediate temperatures (4000 to 10000 K) are calculated with first-principles molecular dynamics simulations. We determine the equation of state as a function of density, temperature, and composition and, using thermodynamic integration, we estimate the Gibbs free energy of mixing, thereby determining the temperature, at a given pressure, when helium becomes insoluble in dense metallic hydrogen. These results are directly relevant to models of the interior structure and evolution of Jovian planets. We find that the temperatures for the demixing of helium and hydrogen are sufficiently high to cross the planetary adiabat of Saturn at pressures ≈5 Mbar; helium is partially miscible throughout a significant portion of the interior of Saturn, and to a lesser extent in Jupiter.
机译:通过第一性原理分子动力学模拟计算了氢-氦混合物在Mbar压力和中间温度(4000至10000 K)下的性能。我们确定状态方程作为密度,温度和组成的函数,并使用热力学积分,估计吉布斯混合的自由能,从而确定在给定压力下氦变得不溶于致密金属氢时的温度。这些结果与木星内部结构和演化模型直接相关。我们发现,氦和氢混合的温度足够高,可以在压力≈5Mbar时穿过土星的行星绝热体。氦在整个土星内部的大部分区域都可以部分混溶,而在木星中则较小。

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