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Electronic structures, magnetic properties and lattice strain effects of quaternary Heusler alloys RuMnCrZ (Z  =  P, As, Sb).

Authors :
Pan Wang
Jian-Bai Xia
Zhongming Wei
Hongyu Wen
Yixin Zong
Hai-Bin Wu
Source :
Journal of Physics D: Applied Physics. 12/11/2019, Vol. 52 Issue 50, p1-1. 1p.
Publication Year :
2019

Abstract

Self-consistent first-principles calculations with the generalized gradient approximation are employed to study the electronic structures, magnetic properties, effects of uniform strain and tetragonal distortion on RuMnCrZ(Z  =  P, As and Sb). It is found that they are all half-metallic ferrimagnets. Calculations show that the total magnetic moments of RuMnCrZ(Z  =  P, As and Sb) are in agreement with the Slater–Pauling 24 electron-rule. The effects of uniform strain and tetragonal distortion are studied for RuMnCrSb. For uniform strain, large spin-down band gaps are observed between  −4% and 0 and EF is located within the gap in the range of  −2% to 0. Furthermore, the total magnetic moment is 2 from  −4% to 0 uniform strain, and the spin polarization P of 100% is observed in the range of  −2% to 0, which indicates that the perfect half-metallicity of RuMnCrSb is maintained within the range. For tetragonal distortion, the spin-down band gaps exist for a large range of distortion:  −8% distortion 6% and the Fermi level is always within the gap for this range. 100% P and the total magnetic moment of 2 are maintained within the range of  −6% to  +5%. It is concluded that the perfect half-metallicity of RuMnCrSb appears in the range of  −6% to  +5% tetragonal distortion. The half-metallicity is more stable in the case of tetragonal distortion. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00223727
Volume :
52
Issue :
50
Database :
Academic Search Index
Journal :
Journal of Physics D: Applied Physics
Publication Type :
Academic Journal
Accession number :
139041316
Full Text :
https://doi.org/10.1088/1361-6463/ab4475