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First-principles investigations on structural, electronic and elastic properties of BeSe under high pressure

机译:高压下BeSe的结构,电子和弹性性质的第一性原理研究

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The structural, electronic and elastic properties of BeSe in both B3 and B8 structures have been studied by first-principles calculations within the generalized gradient approximation (GGA). The calculated lattice parameters and bulk modulus of BeSe are in reasonable agreement with previous results. The predicted value of phase transition pressure from B3 to B8 is 50.24 GPa, which is well in line with the experimental data (56 ± 5 GPa). The calculation of the electronic band structure shows that the energy gap is indirect for B3 and B8 phases. Especially, the elastic constants of B8 BeSe under high pressure were studied for the first time. The bulk modulus, shear modulus, compressional and shear wave velocities of B8 BeSe evaluated from elastic constants as a function of pressure were investigated. In addition, Pois-son's radio, elastic anisotropy and Debye temperature were analyzed successfully.
机译:已经通过广义梯度近似(GGA)中的第一性原理研究了Be3在B3和B8结构中的结构,电子和弹性特性。 BeSe的晶格参数和体积模量与先前的结果合理吻合。从B3到B8的相变压力的预测值为50.24 GPa,与实验数据(56±5 GPa)完全一致。电子能带结构的计算表明,B3和B8相的能隙是间接的。特别是,首次研究了B8 BeSe在高压下的弹性常数。研究了由弹性常数作为压力的函数评估的B8 BeSe的体积模量,剪切模量,压缩和剪切波速度。此外,成功地分析了泊松的无线电波,弹性各向异性和德拜温度。

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