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Thermal transport properties of single-layer black phosphorus from extensive molecular dynamics simulations

机译:广泛的分子动力学模拟单层黑色磷的热传输性能

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We compute the anisotropic in-plane thermal conductivity of suspended single-layer black phosphorus (SLBP) using three molecular dynamics (MD) based methods, including the equilibrium MD method, the nonequilibrium MD (NEMD) method, and the homogeneous NEMD (HNEMD) method. Two existing parameterizations of the Stillinger-Weber (SW) potential for SLBP are used. Consistent results are obtained for all the three methods and conflicting results from previous MD simulations are critically assessed. Among the three methods, the HNEMD method is the most and the NEMD method the least efficient. The thermal conductivity values from our MD simulations are about an order of magnitude larger than the most recent predictions obtained using the Boltzmann transport equation approach considering long-range interactions in density functional theory calculations, suggesting that the short-range SW potential might be inadequate for describing the phonon anharmonicity in SLBP.
机译:我们使用基于三种分子动力学(MD)的方法来计算悬浮单层黑色磷(SLBP)的各向异性面内导热系数,包括平衡MD方法,非平衡MD(NEMD)方法和均质NEMD(HNEMD) 方法。 使用STERGer-WEBER(SW)潜力的两个现有参数化。 对于所有三种方法获得一致的结果,并根据先前MD模拟的所有三种方法和冲突结果得到严重评估。 在这三种方法中,HNEM方法是最低的最低效率和NEMD方法。 来自我们MD模拟的热导率值大约大于使用Boltzmann传输方程方法获得的最新预测的数量级,考虑密度泛函理论计算中的远程相互作用,表明短程SW潜力可能不足 描述SLBP中的声子Anharmonicity。

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