首页> 外文期刊>Journal of chemical theory and computation: JCTC >ChIMES: A Force Matched Potential with Explicit Three-Body Interactions for Molten Carbon
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ChIMES: A Force Matched Potential with Explicit Three-Body Interactions for Molten Carbon

机译:钟声:具有明确的熔融碳的三体相互作用的力匹配潜力

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摘要

We present a new force field and development scheme for atomistic simulations of materials under extreme conditions. These models, which explicitly include two- and three-body interactions, are generated by fitting linear combinations of Chebyshev polynomials through force matching to trajectories from Kohn Sham density functional theory (DFT). We apply our method to liquid carbon near the diamond/graphite/liquid triple point and at higher densities and temperatures, where metallization and many-body effects may be substantial. We show that explicit inclusion of three body interaction terms allows our model to yield improved descriptions of,both dynamic and structural properties over previous empirical potential efforts, while exhibiting transferability to nearby state points. The simplicity of our functional form and subsequent efficiency of parameter determination allow for extension of DFT to experimental time and length scales while retaining most of its accuracy.
机译:我们在极端条件下提出了一种新的力场和原子模拟原子模拟的发展方案。 通过拟合Chebyshev多项式的线性组合通过与来自Kohn假密度功能理论(DFT)的轨迹匹配的线性组合来产生这些模型。 我们将我们的方法应用于金刚石/石墨/液体三点和更高的密度和温度的液体碳,其中金属化和许多身体效果可能是显着的。 我们表明,三个身体交互术语的明确纳入允许我们的模型在以前的经验潜在努力上产生动态和结构性的改进的描述,同时表现出对附近的状态点的可转移性。 我们的功能形式的简单性和随后的参数测定效率允许DFT扩展到实验时间和长度尺度,同时保留其大部分精度。

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