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首页> 外文期刊>The Journal of Chemical Physics >Communication: Phase behavior of materials with isotropic interactions designed by inverse strategies to favor diamond and simple cubic lattice ground states
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Communication: Phase behavior of materials with isotropic interactions designed by inverse strategies to favor diamond and simple cubic lattice ground states

机译:交流:通过逆向策略设计的具有各向同性相互作用的材料的相行为,有利于钻石和简单的立方晶格基态

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摘要

We use molecular simulation to construct equilibrium phase diagrams for two recently introduced model materials with isotropic, soft-repulsive pair interactions designed to favor diamond and simple cubic lattice ground states, respectively, over a wide range of densities [Jain, Soft Matter 9, 3866 (2013)]. We employ free energy based Monte Carlo simulation techniques to precisely trace the inter-crystal and fluid-crystal coexistence curves. We find that both model materials display rich polymorphic phase behavior featuring stable crystals corresponding to the target ground-state structures, as well as a variety of other crystalline (e.g., hexagonal and body-centered cubic) phases and multiple reentrant melting transitions.
机译:我们使用分子模拟为两种最近引入的具有各向同性,软排斥对相互作用的模型材料构造平衡相图,这些材料分别在较大的密度范围内分别支持金刚石和简单立方晶格的基态[Jain,Soft Matter 9,3866 (2013)]。我们采用基于自由能的蒙特卡洛模拟技术来精确追踪晶体间和液晶的共存曲线。我们发现两种模型材料均显示出丰富的多态相行为,其特征是与目标基态结构相对应的稳定晶体,以及各种其他晶体(例如六角形和以人体为中心的立方)相和多个折返熔化转变。

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