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Connecting thermodynamic and dynamical anomalies of water-like liquid-liquid phase transition in the Fermi-Jagla model

机译:在Fermi-Jagla模型中连接水样液相转变的热力学和动态异常

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We present a study using molecular dynamics simulations based on the Fermi-Jagla potential model, which is the continuous version of the mono-atomic core-softened Jagla model [J. Y. Abraham, S. V. Buldyrev, and N. Giovambattista, J. Phys. Chem. B 115, 14229 (2011)]. This model shows the water-like liquid-liquid phase transition between high-density and low-density liquids at the liquid-liquid critical point. In particular, the slope of the coexistence line becomes weakly negative, which is expected to represent one of the anomalies of liquid polyamorphism. In this study, we examined the density, dynamic, and thermodynamic anomalies in the vicinity of the liquid-liquid critical point. The boundaries of density, self-diffusion, shear viscosity, and excess entropy anomalies were characterized. Furthermore, these anomalies are connected according to Rosenfeld's scaling relationship between the excess entropy and the transport coefficients such as diffusion and viscosity. The results demonstrate the hierarchical and nested structures regarding the thermodynamic and dynamic anomalies of the Fermi-Jagla model. Published by AIP Publishing.
机译:我们在Fermi-Jagla潜在模型中使用分子动力学模拟的研究,这是单原子核心软化Jagla模型的连续版本[J. Y.Buldyrev和N.Giovambatta,J. Phy。化学。 B 115,14229(2011)]。该模型显示了在液 - 液临界点的高密度和低密度液体之间的水状液相转变。特别地,共存线的斜率变为弱阴性,预计将代表液体多晶晶的异常之一。在这项研究中,我们检查了液体临界点附近的密度,动态和热力学异常。特征在于密度,自扩散,剪切粘度和过量熵异常的界限。此外,这些异常根据Rosenfeld在多余熵与诸如扩散和粘度的传输系数之间的缩放关系连接。结果证明了关于Fermi-Jagla模型的热力学和动态异常的分层和嵌套结构。通过AIP发布发布。

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