逆heusler化合物X2RuPb(X = La, Sc)的结构、机械、电子、热学和光学性质:第一性原理研究

IF 1.2 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY Revista Mexicana De Fisica Pub Date : 2023-09-01 DOI:10.31349/revmexfis.69.050501
Abdelkader Bouazza, M. Khirat, M. Larbi, N. Bettahar, D. Rached
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引用次数: 1

摘要

拓扑绝缘体是具有绝缘体带隙和拓扑保护的金属表面态的新型量子材料态,由于其在自旋电子和量子计算应用中的有趣特性而得到了广泛的研究。利用基于密度泛函理论的全势线性松松锡轨道模拟方法,计算了两种Hg2CuTi, Cu2 MnAltype结构中逆Heusler化合物La2RuPb和sc2rupb的结构、力学、电子、热学和光学性质。我们对交换电位和相关电位(XC)项采用了局部密度近似。因此,首次计算了La2 RuPb、Sc2 RuPb的光学特性和弹性常数Cij及其对应的弹性模量。根据我们的结构计算,La2 RuPb在Hg2 cuti型结构下比Sc2 RuPb在Cu2 mnal型结构下更稳定。然而,在弹性变形的最后阶段,力学特性显示出它们的稳定性。
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Structural, mechanical, electronic, thermal, and optical properties of the inverse-Heusler compounds X2RuPb(X = La, Sc): A first-principles investigation
Topological insulators are novel quantum material states with insulating bulk band gaps and topologically protected metallic surface states that have been extensively studied owing to their intriguing properties for spintronic and quantum-computing applications. The structural, mechanical, electronic, thermal, and optical properties of inverse Heusler compounds La2RuPb and, Sc2 RuPb in two Hg2CuTi, Cu2 MnAltype structures were calculated using the full potential linear muffin-tin orbital simulation methodology as implemented in the computer code,which is based on density functional theory.We employed the local-density approximation for the exchange and correlation potential (XC) terms. Consequently, the optical characteristics of La2 RuPb, Sc2 RuPb and elastic constants Cij and their corresponding elastic moduli were computed for the first time. According to our structural calculations, La2 RuPb is more stable in its Hg2 CuTi-type structure than Sc2 RuPb in its Cu2 MnAl-type structure. However, the mechanical characteristics demonstrate their stability in the final stages of elastic deformation.
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来源期刊
Revista Mexicana De Fisica
Revista Mexicana De Fisica 物理-物理:综合
CiteScore
2.20
自引率
11.80%
发文量
87
审稿时长
4-8 weeks
期刊介绍: Durante los últimos años, los responsables de la Revista Mexicana de Física, la Revista Mexicana de Física E y la Revista Mexicana de Física S, hemos realizado esfuerzos para fortalecer la presencia de estas publicaciones en nuestra página Web ( http://rmf.smf.mx).
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