Lattice instability of Ni-Mn-Ga ferromagnetic shape memory alloys probed by hard X-ray photoelectron spectroscopy
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4818575
Reference26 articles.
1. Large magnetic‐field‐induced strains in Ni2MnGa single crystals
2. Giant magnetic-field-induced strain in NiMnGa seven-layered martensitic phase
3. The development of new ferromagnetic shape memory alloys in Ni-Mn-Ga system
4. Variation of magnetoresistance in Ni2+xMn1−xGa with composition
5. Structural and magnetic phase transitions in shape-memory alloysNi2+xMn1−xGa
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1. Comparative Study of Electronic Structure in Ferromagnetic Heusler Alloys Ni<sub>2</sub>MnX (X = Al, Ga, In) using the Quasi-Particle Self-Consistent <i>GW</i> Method;Journal of the Magnetics Society of Japan;2024
2. Bulk electronic structure of Ni2MnGa studied by density functional theory and hard x-ray photoelectron spectroscopy;Physical Review B;2023-09-29
3. Bulk electronic structure of Mn2NiGa using hard x-ray photoelectron spectroscopy and density functional theory;Physica Scripta;2023-04-06
4. Intrinsic instability to martensite phases in ferromagnetic shape memory alloy Ni2MnGa : Quasiparticle self-consistent GW investigation;Physical Review Materials;2023-02-21
5. Magnetocaloric effect in the Ru-doped MnNiGe system;Journal of Magnetism and Magnetic Materials;2022-03
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