Velocity autocorrelations across the molecular—atomic fluid transformation in hydrogen under pressure

G. Ruocco, T. Bryk, C. Pierleoni, A. Seitsonen
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引用次数: 2

Abstract

Non-monotonous changes in velocity autocorrelations across the transformation from molecular to atomic fluid in hydrogen under pressure are studied by ab initio molecular dynamics simulations at the temperature 2500 K. We report diffusion coefficients in a wide range of densities from purely molecular fluid up to metallic atomic fluid phase. An analysis of contributions to the velocity autocorrelation functions from the motion of molecular centers-of-mass, rotational and intramolecular vibrational modes is performed, and a crossover in the vibrational density of intramolecular modes across the transition is discussed.
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压力下氢分子-原子流体转化的速度自相关性
采用分子动力学从头算方法,研究了压力下氢从分子流体向原子流体转变过程中速度自相关的非单调变化。我们报告了从纯分子流体到金属原子流体相的各种密度下的扩散系数。分析了分子质心、旋转和分子内振动模式的运动对速度自相关函数的贡献,并讨论了分子内模式的振动密度跨跃迁的交叉。
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