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The interactions between thermodynamic anomalies

机译:热力学异常之间的相互作用

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The origin of and interactions between key thermodynamic anomalies are derived and analyzed, as are the interactions with the stability (or cavitation) limits. The conditions for interaction are derived from the underlying thermodynamic relations rather than using the morecommonly applied Taylor expansion method. As a result, we derive a general set of equations that govern the interactions between different lines of thermodynamic anomalies using standard manipulation of thermodynamic equations. The validity of the derivations is investigated by comparing them to numerical simulation data and previous Taylor expansion-based results. Simulations are performed using a modified Stillinger-Weber potential in which the balance of the two-and three-body interactions is varied and which serves to highlight the relationships between the various anomalies. The deeply supercooled regime is explored by employing replica exchange methods. The behavior of the anomalies is considered in terms of previously constructed thermodynamic "scenarios." Based on the newly uncovered interaction schemes, we propose a classification strategy for the thermodynamic anomalies (as first-or second-order) which could be extended to additional related anomalies.
机译:衍生和分析关键热力学异常之间的起源和相互作用,与稳定性(或空化)限制的相互作用也是如此。相互作用的条件来自潜在的热力学关系,而不是使用森林应用泰勒膨胀方法。结果,我们通过标准操作热力学方程,得出了一系列的一组一般方程来控制不同线的热力学异常之间的相互作用。通过将它们与数值模拟数据和以前的基于泰勒扩展的结果进行比较来研究派生的有效性。使用修改的stillinger-weber潜力进行仿真,其中两个和三体相互作用的平衡变化,并且用于突出各种异常之间的关系。通过采用复制品交换方法探索深陷超级制度。在先前构造的热力学“情景方面,考虑了异常的行为。基于新发现的互动方案,我们提出了一种用于热力学异常(作为第一或二阶)的分类策略,其可以扩展到额外的相关异常。

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