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Effect of potential truncations and shifts on the solid-liquid phase coexistence of Lennard-Jones fluids

机译:可能的截断和位移对Lennard-Jones流体固液共存的影响

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摘要

Molecular simulation results for the solid-liquid coexistence properties of untruncated, truncated, truncated and shifted, and truncated and shifted-force 12-6 Lennard-Jones potentials are reported. It is found that solid-liquid coexistence properties vary systematically with potential truncations, shifts, and cut-off values. Potential truncations and shifts have important consequences at low temperatures, particularly in the vicinity of the triple point. The main influence is on the coexistence pressure whereas both liquid and solid densities are less sensitive to the truncations and shifts. The data reported in this work indicate that the cut-off radius mainly affects the properties of the liquid phase whereas its influence on the solid phase is almost negligible. The data suggest a monotonic variation of the melting temperature as a function of cut-off radius, which contradicts the oscillatory behavior of the melting temperature reported elsewhere.
机译:分子模拟结果的固液共存特性的截断,截断,截断和转移,以及截断和转移力12-6 Lennard-Jones电位的报告。发现固液共存特性随着潜在的截断,移位和截断值而系统地变化。在低温下,特别是在三相点附近,可能的截断和移位会产生重要的后果。主要影响因素是共存压力,而液体和固体密度对截断和移动都不太敏感。这项工作中报告的数据表明,截止半径主要影响液相的性质,而其对固相的影响几乎可以忽略不计。数据表明,熔融温度的单调变化是临界半径的函数,这与其他地方报道的熔融温度的振荡行为相矛盾。

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