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Diffusion and viscosity of liquid tin: Green-Kubo relationship-based calculations from molecular dynamics simulations

机译:液态锡的扩散和粘度:基于分子动力学模拟的基于Green-Kubo关系的计算

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摘要

Molecular dynamics (MD) simulations of liquid tin between its melting point and 1600 C have been performed in order to interpret and discuss the ionic structure. The interactions between ions are described by a new accurate pair potential built within the pseudopotential formalism and the linear response theory. The calculated structure factor that reflects the main information on the local atomic order in liquids is compared to diffraction measurements. Having some confidence in the ability of this pair potential to give a good representation of the atomic structure, we then focused our attention on the investigation of the atomic transport properties through the MD computations of the velocity autocorrelation function and stress autocorrelation function. Using the Green-Kubo formula (for the first time to our knowledge for liquid tin) we determine the macroscopic transport properties from the corresponding microscopic time autocorrelation functions. The selfdiffusion coefficient and the shear viscosity as functions of temperature are found to be in good agreement with the experimental data.
机译:为了解释和讨论离子结构,已经对液态锡的熔点和1600 C之间进行了分子动力学(MD)模拟。离子之间的相互作用由伪势形式学和线性响应理论中建立的新的精确对势来描述。将反映液体中局部原子序的主要信息的计算结构因数与衍射测量结果进行比较。对这对电位能够很好地表示原子结构的能力有一定的信心,然后我们将注意力集中在通过速度自相关函数和应力自相关函数的MD计算研究原子传输性质上。使用Green-Kubo公式(这是我们第一次了解液态锡),我们从相应的微观时间自相关函数确定宏观传输特性。发现自扩散系数和剪切粘度作为温度的函数与实验数据非常吻合。

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