Magnetic anisotropies effect on the Spin-Seebeck response in spinel ferrite thin films

ABSTRACT: Observation of spin Seebeck effect (SSE) at room temperature in a weak ferromagnetic material, for example, a spinel zinc ferrite (ZnFe2O4) in bulk and thin film is demonstrated. In order to understand the physics behind this effect, a systematic structural and magnetic characterization wi...

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Autores:
Gil Monsalve, Johanna
Figueroa García, Adriana Isabel
van der Laan, Gerrit
Campillo Figueroa, Gloria Eugenia
N’Diaye, Alpha T.
Ostos Ortiz, Carlos Eduardo
Azevedo, Antonio
Arnache Olmos, Oscar Luis
Tipo de recurso:
http://purl.org/coar/resource_type/c_6670
Fecha de publicación:
2022
Institución:
Universidad de Antioquia
Repositorio:
Repositorio UdeA
Idioma:
eng
OAI Identifier:
oai:bibliotecadigital.udea.edu.co:10495/32434
Acceso en línea:
https://hdl.handle.net/10495/32434
Palabra clave:
Propiedades magnéticas
Magnetics properties
Películas delgadas
Thin films
Ferrita
Ferrite
Ferritas (materiales magnéticos)
Ferrites (Magnetic materials)
Anisotropía magnética
Magnetic anisotropies
Espinela
Rights
openAccess
License
Atribución-NoComercial-CompartirIgual 2.5 Colombia
Description
Summary:ABSTRACT: Observation of spin Seebeck effect (SSE) at room temperature in a weak ferromagnetic material, for example, a spinel zinc ferrite (ZnFe2O4) in bulk and thin film is demonstrated. In order to understand the physics behind this effect, a systematic structural and magnetic characterization with the SSE signal in this ferrite is presented. Measurements of Surface analysis by x-ray hotoemission (XPS) and absorption (XAS) spectroscopies, and x-ray magnetic circular dichroism (XMCD) provide information about the cationic distribution in the lattice, which is found to be responsible of the magnetic response in the material. The magnetic anisotropy, as well as the Gilbert constant of the ferrite have been investigated by means of ferromagnetic resonance measurements. These measurements are useful to predict the spin Seebeck response in the material.