Xu Limei, Buldyrev Sergey V, Angell C Austen, Stanley H Eugene
Center for Polymer Studies and Department of Physics, Boston University, Boston, Massachusetts 02215, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Sep;74(3 Pt 1):031108. doi: 10.1103/PhysRevE.74.031108. Epub 2006 Sep 11.
Using molecular dynamics simulations, we study the Jagla model of a liquid which consists of particles interacting via a spherically symmetric two-scale potential with both repulsive and attractive ramps. This potential displays anomalies similar to those found in liquid water, namely expansion upon cooling and an increase of diffusivity upon compression, as well as a liquid-liquid (LL) phase transition in the region of the phase diagram accessible to simulations. The LL coexistence line, unlike in tetrahedrally coordinated liquids, has a positive slope, because of the Clapeyron relation, corresponding to the fact that the high density phase (HDL) is more ordered than low density phase (LDL). When we cool the system at constant pressure above the critical pressure, the thermodynamic properties rapidly change from those of LDL-like to those of HDL-like upon crossing the Widom line. The temperature dependence of the diffusivity also changes rapidly in the vicinity of the Widom line, namely the slope of the Arrhenius plot sharply increases upon entering the HDL domain. The properties of the glass transition are different in the two phases, suggesting that the less ordered phase is fragile, while the more ordered phase is strong, which is consistent with the behavior of tetrahedrally coordinated liquids such as water silica, silicon, and BeF2.
通过分子动力学模拟,我们研究了一种液体的贾格拉模型,该液体由通过具有排斥和吸引斜坡的球对称双尺度势相互作用的粒子组成。这种势表现出与液态水中发现的异常现象相似的特征,即冷却时膨胀、压缩时扩散率增加,以及在模拟可及的相图区域内存在液-液(LL)相变。与四面体配位液体不同,LL共存线具有正斜率,这是由于克拉珀龙关系,这对应于高密度相(HDL)比低密度相(LDL)更有序的事实。当我们在高于临界压力的恒定压力下冷却系统时,在穿过维德曼线时,热力学性质会从类似LDL的性质迅速转变为类似HDL的性质。在维德曼线附近,扩散率的温度依赖性也会迅速变化,即进入HDL区域时,阿仑尼乌斯图的斜率会急剧增加。两个相中的玻璃化转变性质不同,这表明较无序的相是脆性的,而较有序的相是强的,这与四面体配位液体如水、二氧化硅、硅和BeF2的行为一致。