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Communication: The Rosenfeld-Tarazona expression for liquids' specific heat: A numerical investigation of eighteen systems

机译:交流:液体比热的Rosenfeld-Tarazona表达式:18个系统的数值研究

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摘要

We investigate the accuracy of the expression of Rosenfeld and Tarazona (RT) for the excess isochoric heat capacity, CV ex ∝T-2/5, for 18 model liquids. Previous investigations have reported no unifying features of breakdown for the RT expression. Here, liquids with different stoichiometric composition, molecular topology, chemical interactions, degree of undercooling, and environment are investigated. The RT expression is a better approximation for liquids with strong correlations between equilibrium fluctuations of virial and potential energy, i.e., "Roskilde-simple" liquids [T. S. Ingebrigtsen, T. B. Schr?der, and J. C. Dyre, Phys. Rev. X 2, 011011 (2012)]. This observation holds even for molecular liquids under severe nanoscale confinement which does not follow from the original RT bulk hard-sphere fluid perturbation theory arguments. The density dependence of the specific heat is predicted from the isomorph theory for Roskilde-simple liquids, which in combination with the RT expression provides a complete description of the specific heat's density and temperature dependence.
机译:我们研究了18种模型液体的过饱和等容热容CV ex ∝T-2 / 5的Rosenfeld和Tarazona(RT)表达式的准确性。先前的研究报道了RT表达没有统一的分解特征。在这里,研究了具有不同化学计量组成,分子拓扑结构,化学相互作用,过冷度和环境的液体。对于液体,在病毒和势能的平衡波动之间有很强的相关性,即“罗斯基德简单”液体[RT。 S.Ingebrigtsen,T.B.Schr?der和J.C.Dyre,物理学。修订版X 2,011011(2012)。即使在严格的纳米级限制下的分子液体中,该观察结果也成立,这与原始的RT体积硬球流体微扰理论的论点不同。根据罗斯基勒简单液体的同构理论,可以预测比热的密度依赖性,该同构理论与RT表达式结合可提供比热密度和温度依赖性的完整描述。

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