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Core-softened system with attraction: Trajectory dependence of anomalous behavior

机译:具有吸引力的核心软化系统:异常行为的轨迹依赖性

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In the present article we carry out a molecular dynamics study of the core-softened system and show that the existence of the water-like anomalies in this system depends on the trajectory in P-ρ-T space along which the behavior of the system is studied. For example, diffusion and structural anomalies are visible along isotherms as a function of density, but disappears along the isochores and isobars as a function of temperature. On the other hand, the diffusion anomaly may be seen along adiabats as a function of temperature, density, and pressure. It should be noted that it may be no signature of a particular anomaly along a particular trajectory, but the anomalous region for that particular anomaly can be defined when all possible trajectories in the same space are examined (for example, signature of diffusion anomaly is evident through the crossing of different isochors. However, there is no signature of diffusion anomaly along a particular isochor). We also analyze the applicability of the Rosenfeld entropy scaling relations to this system in the regions with the water-like anomalies. It is shown that the validity of the Rosenfeld scaling relation for the diffusion coefficient also depends on the trajectory in the P - T space along which the kinetic coefficients and the excess entropy are calculated.
机译:在本文中,我们对核心软化系统进行了分子动力学研究,结果表明该系统中水样异常的存在取决于系统行为在P-ρ-T空间中的轨迹。研究。例如,扩散和结构异常沿等温线作为密度的函数可见,而沿等温线和等压线作为温度的函数消失。另一方面,沿着绝热体可以看到扩散异常是温度,密度和压力的函数。应当指出,可能不是沿着特定轨迹的特定异常的特征,但是当检查同一空间中所有可能的轨迹时,可以定义该特定异常的异常区域(例如,扩散异常的特征很明显通过不同等轴线的交叉。但是,沿着特定等轴线没有扩散异常的特征。我们还分析了Rosenfeld熵标度关系对该系统在水样异常区域中的适用性。结果表明,Rosenfeld比例关系对于扩散系数的有效性还取决于在P-T空间中的轨迹,沿着该轨迹计算动力学系数和过量熵。

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