First-principles study on the ferrimagnetic half-metallic Mn2FeAs alloy
Autor: | Chuan-Hui Zhang, Nan-Xian Chen, San-Tao Qi, Bao Chen, Jiang Shen |
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Rok vydání: | 2015 |
Předmět: |
Materials science
Spin polarization Magnetic moment Spintronics Condensed matter physics Fermi level Electronic structure Condensed Matter Physics Electronic Optical and Magnetic Materials Inorganic Chemistry symbols.namesake Lattice constant Ferromagnetism Ferrimagnetism Materials Chemistry Ceramics and Composites symbols Physical and Theoretical Chemistry |
Zdroj: | Journal of Solid State Chemistry. 225:8-12 |
ISSN: | 0022-4596 |
DOI: | 10.1016/j.jssc.2014.11.026 |
Popis: | Mn-based full-Heusler alloys are kinds of promising candidates for new half-metallic materials. Basing on first principles, the electronic structures and magnetic properties of the Mn{sub 2}FeAs full-Heusler alloy have been investigated in detail. The Hg{sub 2}CuTi-type Mn{sub 2}FeAs compound obeys the Slater-Pauling rule, while the anti-parallel alignment atomic magnetic moments of Mn locating at different sites indicate it a ferrimagnetic alloy. The calculated spin-down bands behave half-metallic character, exhibiting a direct gap of 0.46 eV with a 100% spin polarization at the Fermi level. More studies show the compound would maintain half-metallic nature in a large range of variational lattice constants. We expect that our calculated results may trigger Mn{sub 2}FeAs applying in the future spintronics field. - Graphical abstract: The d orbitals of Mn and Fe atoms split into multi-degenerated levels which create new bonding and nonbonding states. These exchange splitting shift the Fermi level to origin band gap.▪ - Highlights: • The electronic structure and magnetic properties of Mn{sub 2}FeAs full-Heusler alloy were studied. • A total magnetic moment of 3μ{sub B} was obtained for Mn{sub 2}FeAs alloy, following the SP rule M{sub t}=Z{sub t}−24. • The origin of ferrimagnetism and half-metallic character in Mn{sub 2}FeAs were discussed. |
Databáze: | OpenAIRE |
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