Electronic structures, magnetic properties and mechanical stability of half-metallic quaternary Heusler CoMnVTe

被引:0
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作者
H. M. Huang
H. J. Zhou
G. Y. Liu
A. Laref
L. M. Liu
机构
[1] Hubei University of Automotive Technology,School of Science
[2] King Saud University,Department of Physics and Astronomy, College of Science
来源
Applied Physics A | 2020年 / 126卷
关键词
Heusler; Elastic modulus; Half-metal; First-principle; Surface;
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学科分类号
摘要
The electronic structures, magnetic properties and mechanical stability of three configurations of a promising half-metallic quaternary Heusler compound CoMnVTe were systematically and comprehensively studied by the first-principle calculations. The results show that type-I and type-II configurations present half-metallic behavior with 100% spin polarization. Especially the type-I configuration has the most stable structure among these three configurations. The type-I, type-II configurations can maintain the half-metallic character within the lattice constant 5.47–6.12 Å and 5.82–6.23 Å, respectively. Anisotropy factor and three-dimensional (3D) Young’s modulus indicate that these three configurations of CoMnVTe compound are anisotropic. The type-I and type-II configurations own stable mechanical properties in some and all half-metallic lattice constant regions, respectively. The test results of strong correlation correction show that the U value has a visible effect on the half-metallic properties of the title compound. The (001)@VTe and (111)@V surfaces of type-I configuration also have half-metallic properties. The robust half-metallic properties and mechanical stability make the quaternary Heusler compound CoMnVTe a promising candidate for spintronic devices.
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