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聚焦于熔化前驱体的 Lennard-Jones 面心立方固体的结构与动力学

Structure and dynamics of the Lennard-Jones fcc-solid focusing on melting precursors.

作者信息

Mausbach Peter, Fingerhut Robin, Vrabec Jadran

机构信息

Plant and Process Engineering, Technical University of Cologne, 50678 Cologne, Germany.

Thermodynamics and Process Engineering, Technical University of Berlin, 10587 Berlin, Germany.

出版信息

J Chem Phys. 2020 Sep 14;153(10):104506. doi: 10.1063/5.0015371.

Abstract

The Lennard-Jones potential is taken as a basis to study the structure and dynamics of the face centered cubic (fcc) solid along an isochore from low temperatures up to the solid/fluid transition. The Z method is applied to estimate the melting point. Molecular dynamics simulations are used to calculate the pair distribution function, numbers of nearest neighbors, and the translational order parameter, analyzing the weakening of the fcc-symmetry due to emerging premelting effects. A range of dynamic properties, such as the mean-squared displacement, non-Gaussian parameter, Debye-Waller factor, and vibrational density of states, is considered for the analysis of the solid state. All of these parameters clearly show that bulk mobility is activated at about 2/3 of the melting temperature, known as the Tammann temperature. This indicates that vibrational motion of atoms is not maintained exclusively in the entire stable solid state and that collective atomic motion constitutes a precursor of the melting process.

摘要

以 Lennard-Jones 势为基础,研究面心立方(fcc)固体在等容条件下从低温到固/液转变的结构和动力学。应用 Z 方法估算熔点。采用分子动力学模拟计算对分布函数、最近邻原子数和平移序参量,分析由于预熔效应出现导致的 fcc 对称性减弱。考虑一系列动力学性质,如均方位移、非高斯参数、德拜-瓦勒因子和振动态密度,用于分析固态。所有这些参数都清楚地表明,在大约 2/3 的熔点温度(即所谓的坦曼温度)时,体相迁移率被激活。这表明原子的振动运动并非在整个稳定固态中完全保持,集体原子运动构成了熔化过程的前兆。

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