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Calculation of the anisotropic coefficients of thermal expansion: A first-principles approach

机译:热膨胀各向异性系数的计算:一种第一原理方法

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摘要

Predictions of the anisotropic coefficients of thermal expansion are needed to not only compare to experimental measurement, but also as input for macroscopic modeling of devices which operate over a large temperature range. While most current methods are limited to isotropic systems within the quasiharmonic approximation, our method uses first-principles calculations and includes anharmonic effects to determine the temperature-dependent properties of materials. These include the lattice parameters, anisotropic coefficients of thermal expansion, isotherm bulk modulus, and specific heat at constant pressure. Our method has been tested on two compounds (Cu and AlN) and predicts thermal properties which compare favorably to experimental measurement over a wide temperature range.
机译:需要预测热膨胀的各向异性膨胀系数,不仅可以与实验测量相比,还需要作为在大温度范围内操作的装置的宏观建模的输入。 虽然大多数当前方法限于四臂近似值内的各向同性系统,但是我们的方法使用第一原理计算并包括非谐波效应来确定材料的温度依赖性。 这些包括晶格参数,热膨胀的各向异性系数,等温线体积模量和在恒定压力下的特定热量。 我们的方法已在两种化合物(Cu和AlN)上测试,并预测热性质,其在宽温度范围内比较实验测量。

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