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首页> 外文期刊>Contributions to Plasma Physics >Properties of dense fluid hydrogen and helium in giant gas planets
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Properties of dense fluid hydrogen and helium in giant gas planets

机译:巨大气体行星中的稠密流体氢和氦的性质

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摘要

Equilibrium properties of hydrogen-helium mixtures under thermodynamic conditions found in the interior of giant gas planets are studied by means of density functional theory molecular dynamics simulations. Special emphasis is placed on the molecular-to-atomic transition in the fluid phase of hydrogen in the presence of helium. Helium has a substantial influence on the stability of hydrogen molecules. The molecular bond is strengthened and its length is shortened as a result of the increased localization of the electron charge around the helium atoms, which leads to more stable hydrogen molecules compared to pure hydrogen for the same thermodynamic conditions. The ab initio treatment of the mixture enables us to investigate the structure of the liquid and to discuss hydrogen-hydrogen, helium-helium, and hydrogen-helium correlations on the basis of pair correlation functions. (c) 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:利用密度泛函理论分子动力学模拟研究了在巨大气体行星内部发现的热力学条件下氢氦混合物的平衡性质。特别强调的是在氦气存在下氢在液相中的分子到原子的转变。氦气对氢分子的稳定性有重大影响。由于在氦原子周围电子电荷的局部化增加,分子键得到增强,其长度缩短,与相同热力学条件下的纯氢相比,氢分子的稳定性更高。混合物的从头开始处理使我们能够研究液体的结构,并在成对相关函数的基础上讨论氢-氢,氦-氦和氢-氦的相关性。 (c)2007威利海姆威莱赫-维奇出版社有限公司。

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