Structural, electronic and optical properties of the Half-Heusler MgYGa alloy Via DFT calculations

Kamel Hocine, G. Youcef, B. Nabil, B. Samir, M. Ahmed, C. Abdelali
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Abstract

Ab initio calculation of the structural, electronic and optical properties of half-Heusler MgYGa alloy are reported using the FP-LAPW approach of the Density Functional Theory. Generalized Gradient Approximation was used as the exchange and correlation potential for investigating these properties. Structural properties of MgYGa alloy, such as the lattice constants, bulk modulus and pressure derivative of the bulk module have been studied. Electronic properties were investigated by calculating and analyzing the electronic band structure, partial and total density of states graphs for the MgYGa compound. We have found that MgYGa compound has a metallic character. The investigation of optical properties indicates a great interaction between the compound and the incident light.
通过 DFT 计算获得的半休斯勒镁钇镓合金的结构、电子和光学特性
报告采用密度泛函理论的 FP-LAPW 方法对半休斯勒镁钇镓合金的结构、电子和光学特性进行了 Ab initio 计算。在研究这些性质时,使用了广义梯度逼近作为交换和相关势。研究了镁镓合金的结构特性,如晶格常数、体积模量和体积模量的压力导数。通过计算和分析 MgYGa 合金的电子能带结构、部分和全部状态密度图,对其电子特性进行了研究。我们发现镁镓化合物具有金属特性。对光学特性的研究表明,该化合物与入射光之间存在着巨大的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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