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Pressure effects on the thermodynamic and mechanical properties of zinc-blende ZnTe compound

机译:锌 - 勃姆锌化合物热力学和力学性能的压力影响

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摘要

In this paper, the moment method in statistical mechanics has been employed to study the pressure effects on thermodynamic and mechanical properties of zinc-blende zinc telluride using many-body potential. We have derived the analytical expressions of the pressure-dependent lattice parameter, volume compression as well as mean-square displacement of zinc-blende type compound. Numerical calculations performed for ZnTe compound up to 12 GPa are found to be in good and reasonable agreement with available experimental data as well as with previous theoretical studies. These results have been used to evaluate the bulk modulus and its first pressure derivative of ZnTe. The present moment method has taken into account the quantum zero-point vibrations at low temperature and the higher-order anharmonic terms in the atomic displacements. This research shows the advantage of moment method on extensively studying thermo-mechanical properties of materials under high pressures.
机译:本文采用了统计力学的瞬间方法来研究利用许多身体电位研究锌 - 闪光锌碲化锌热力学和力学性能的压力影响。 我们衍生出压力依赖性晶格参数,体积压缩的分析表达式,体积压缩以及锌 - 融合型化合物的平均方形位移。 对ZnTe化合物进行的数值计算,最高可达12GPa,与可用的实验数据以及以前的理论研究有良好合理的协议。 这些结果已被用于评估ZnTe的散装模量及其第一压力衍生物。 目前的瞬间方法考虑了原子位移中的低温和高阶Anharmonic术语的量子零点振动。 该研究表明了在高压下广泛研究材料的热机械性能的时刻方法的优势。

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