Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QZ, United Kingdom.
Phys Rev E. 2019 Jan;99(1-1):010103. doi: 10.1103/PhysRevE.99.010103.
A relationship between the observation of a density anomaly and the underlying crystalline phase diagram is demonstrated. The crystal phase diagram and temperature of maximum density (TMD) lines are calculated over a range of parameter space using a Stillinger-Weber potential. Relationships between the loci of density maxima in the PT plane for the liquid state and the underlying crystalline phase diagram are investigated. Two key potential parameters are systematically varied in order to control the balance between the model two- and three-body interaction terms, and the relative effects of varying the potential parameters analyzed. The respective TMD lines diverge at extreme values with one set of lines showing a reentrant behavior. For each parameter set the TMD lines are extrapolated to T=0K. The corresponding pressures are related to the crystalline phase diagram and are found to lie on or near specific crystal-crystal coexistence lines for a wide range of potential parameters. The density anomaly is observed to vanish corresponding to regions in the crystal phase diagram which lack crystal-crystal coexistence lines potentially offering a new interpretation for the emergence of anomalous behavior.
证明了密度异常的观察与潜在的结晶相图之间存在关系。使用 Stillinger-Weber 势在一系列参数空间中计算了晶体相图和密度最大值温度 (TMD) 线。研究了 PT 平面上液体状态下密度最大值的轨迹与潜在的结晶相图之间的关系。系统地改变两个关键的势能参数,以控制模型的二体和三体相互作用项之间的平衡,并分析了改变势能参数的相对影响。在极值处,各自的 TMD 线发散,其中一组线表现出再入行为。对于每个参数集,TMD 线都被外推到 T=0K。相应的压力与结晶相图有关,并且发现它们位于或靠近特定的晶体-晶体共存线上,这对于广泛的势能参数范围都是如此。观察到密度异常在缺乏晶体-晶体共存线的晶体相图区域中消失,这为异常行为的出现提供了一种新的解释。