Artículo
Correlation between magnetic and crystal structural sublattices in palladium-doped FeRh alloys: Analysis of the metamagnetic phase transition driving forces
Komlev, Aleksei S.; Karpenkov, Dmitriy Y.; Gimaev, Radel R.; Chirkova, Alisa; Akiyama, Ayaka; Miyanaga, Takafumi; Hupalo, Marcio Ferreira; Aguiar, D.J.M.; Carvalho, Alexandre Magnus G.; Jiménez, María Julia
; Cabeza, Gabriela Fernanda
; Zverev, Vladimir I.; Perov, Nikolai S.
Fecha de publicación:
25/03/2022
Editorial:
Elsevier Science SA
Revista:
Journal of Alloys and Compounds
ISSN:
0925-8388
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
FeRh alloys doped with the third element exhibit a change in the lattice and magnetic subsystems, which are manifested in antiferromagnetic- ferromagnetic (AFM-FM) first-order phase transition temperature, the shrinkage of the temperate hysteresis under transition, and the reduction of the saturation magnetization. All aforementioned parameters are crucial for practical applications. To control them it is quite important to determine the driving forces of the metamagnetic transition and its origins. In this manuscript ab initio calculations and experimental studies results are presented, which demonstrate the correlation between the structural and magnetic properties of the Fe50Rh50−xPdx alloys. The qualitative analysis of the metamagnetic phase transition driving forces in palladium-doped FeRh alloys was performed to determine their contribution to the evolution of magnetic and lattice subsystems. In addition, the impact of the impurities phases together with its magnetic behavior on the AFM-FM phase transition was considered.
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Articulos(IFISUR)
Articulos de INSTITUTO DE FISICA DEL SUR
Articulos de INSTITUTO DE FISICA DEL SUR
Citación
Komlev, Aleksei S.; Karpenkov, Dmitriy Y.; Gimaev, Radel R.; Chirkova, Alisa; Akiyama, Ayaka; et al.; Correlation between magnetic and crystal structural sublattices in palladium-doped FeRh alloys: Analysis of the metamagnetic phase transition driving forces; Elsevier Science SA; Journal of Alloys and Compounds; 898; 25-3-2022; 1-32
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