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Communication: Phase transitions, criticality, and three-phase coexistence in constrained cell models

机译:交流:受限细胞模型中的相变,临界度和三相共存

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In simulation studies of fluid-solid transitions, the solid phase is usually modeled as a constrained system in which each particle is confined to move in a single Wigner-Seitz cell. The constrained cell model has been used in the determination of fluid-solid coexistence via thermodynamic integration and other techniques. In the present work, the phase diagram of such a constrained system of Lennard-Jones particles is determined from constant-pressure simulations. The pressure-density isotherms exhibit inflection points which are interpreted as the mechanical stability limit of the solid phase. The phase diagram of the constrained system contains a critical and a triple point. The temperature and pressure at the critical and the triple point are both higher than those of the unconstrained system due to the reduction in the entropy caused by the single occupancy constraint.
机译:在流固转换的模拟研究中,通常将固相建模为一个受约束的系统,其中每个粒子被限制在单个Wigner-Seitz单元中移动。约束单元模型已用于通过热力学积分和其他技术确定流固共存。在目前的工作中,这种Lennard-Jones粒子约束系统的相图由恒压模拟确定。压力密度等温线显示出拐点,这些拐点被解释为固相的机械稳定性极限。约束系统的相图包含一个临界点和一个三相点。临界点和三相点处的温度和压力均高于无约束系统的温度和压力,这是由于由单个占用约束引起的熵的减小。

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