Ferromagnetic resonance of spin-valves: the case of IrMn(150Å)/Co(50Å)/Ru(32Å) /NiFe(50Å) system

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In this work we study theoretically the ferromagnetic resonance in a spin-valve. For this purpose, we propose a phenomenological model for the density of Helmholtz free energy taking into account the magnetocrystalline anisotropy, shape anisotropy, interlayer exchange coupling and exchange bias. Con...

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Detalles Bibliográficos
Autores: Tarazona Coronel, H. S., Landauro, C. V., Quispe Marcatoma, J.
Formato: artículo
Fecha de Publicación:2014
Institución:Universidad Nacional Mayor de San Marcos
Repositorio:Revistas - Universidad Nacional Mayor de San Marcos
Lenguaje:español
OAI Identifier:oai:ojs.csi.unmsm:article/11530
Enlace del recurso:https://revistasinvestigacion.unmsm.edu.pe/index.php/fisica/article/view/11530
Nivel de acceso:acceso abierto
Materia:Spin valve
ferromagnetic resonance
magnetic multilayer
dispersion relation.
válvula de espín
resonancia ferromagnética
multicapa magnética
relación de dispersión
Descripción
Sumario:In this work we study theoretically the ferromagnetic resonance in a spin-valve. For this purpose, we propose a phenomenological model for the density of Helmholtz free energy taking into account the magnetocrystalline anisotropy, shape anisotropy, interlayer exchange coupling and exchange bias. Considering this energy density we solve the Landau-Lifshitz equation in spherical coordinates and in the resonance condition. In this way, we obtain the dispersion relation and, as a consequence, the frequency versus the resonance field. These results are in good agreement with the literature. Additionally, we apply the model to the IrMn/Co/Ru/NiFe system and study the magnetic coupling interlayers, where the non-magnetic layer (Ru) has a thickness of 3.2 nm. The results indicate the existence of an antiferromagnetic coupling with a strength of couping of Jbl + 2Jbc = −4.3 erg/cm2.
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