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首页> 外文期刊>The Journal of Chemical Physics >Liquid polymorphism, order-disorder transitions and anomalous behavior: A Monte Carlo study of the Bell–Lavis model for water
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Liquid polymorphism, order-disorder transitions and anomalous behavior: A Monte Carlo study of the Bell–Lavis model for water

机译:液体多态性,有序-无序过渡和异常行为:贝尔-拉维斯水模型的蒙特卡洛研究

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摘要

The Bell–Lavis model for liquid water is investigated through numerical simulations. The lattice-gas model on a triangular lattice presents orientational states and is known to present a highly bonded low density phase and a loosely bonded high density phase. We show that the model liquid-liquid transition is continuous, in contradiction with mean-field results on the Husimi cactus and from the cluster variational method. We define an order parameter which allows interpretation of the transition as an order-disorder transition of the bond network. Our results indicate that the order-disorder transition is in the Ising universality class. Previous proposal of an Ehrenfest second order transition is discarded. A detailed investigation of anomalous properties has also been undertaken. The line of density maxima in the HDL phase is stabilized by fluctuations, absent in the mean-field solution.
机译:通过数值模拟研究了液态水的Bell-Lavis模型。三角形晶格上的晶格气体模型呈现取向状态,已知呈现高键合的低密度相和松散键合的高密度相。我们表明,模型的液-液过渡是连续的,这与Husimi仙人掌和聚类变分方法的平均场结果相矛盾。我们定义一个有序参数,该参数允许将过渡解释为键合网络的有序无序过渡。我们的结果表明,有序-无序转换属于Ising通用性类。 Ehrenfest二阶过渡的先前提议被丢弃。还对异常性质进行了详细的调查。 HDL相中的密度最大值线由波动稳定,在平均场解中不存在。

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