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首页> 外文期刊>Angewandte Chemie >A Hundred-Year-Old Experiment Re-evaluated: Accurate AbInitio MonteCarlo Simulations of the Melting of Radon
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A Hundred-Year-Old Experiment Re-evaluated: Accurate AbInitio MonteCarlo Simulations of the Melting of Radon

机译:一百岁的实验重新评估:准确的Abinitio Montecarlo模拟氡熔化

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摘要

State-of-the-art relativistic coupled-cluster theory is used to construct many-body potentials for the noble-gas element radon to determine its bulk properties including the solid-to-liquid phase transition from parallel tempering Monte Carlo simulations through either direct sampling of the bulk or from a finite cluster approach. The calculated melting temperature are 200(3) K and 200(6) K from bulk simulations and from extrapolation of finite cluster values, respectively. This is in excellent agreement with the often debated (but widely cited) and only available value of 202 K, dating back to measurements by Gray and Ramsay in 1909.
机译:最先进的相对论耦合簇理论用于构建贵族气体元件氡的许多身体电位,以确定其堆积性质,包括通过直接的并联回火蒙特卡罗模拟的固态相变。 散装或来自有限元方法的采样。 计算的熔化温度为200(3)k和200(6)克,分别是分散模拟,分别从有限簇值外推。 这与经常辩论(但广泛引用)和仅可用值为202 K的常见协议,约会于1909年通过灰色和拉姆斯的测量值。

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