Tuning the magnetic properties of $mathrmV_2mathrmO_3/mathrmCoFeB$ heterostructures across the $mathrmV_2mathrmO_3$ structural transition
Articolo
Data di Pubblicazione:
2021
Abstract:
In this work, we investigate the effects of the V2O3 structural phase transition on the magnetic properties of an
amorphous magnetic thin film of CoFeB in contact with it. V2O3 thin films are deposited epitaxially on sapphire
substrates, reaching bulklike properties after few nm of growth. By means of temperature dependent Kerr
effect characterizations, we prove that crossing the V2O3 structural phase transition induces reproducible and
reversible changes to CoFeB magnetic properties, especially to its coercive field. By decreasing the oxide layer
thickness, its effects on the magnetic layer decreases, while reducing the magnetic layer thickness maximizes
it, with a maximum of 330% coercive field variation found between the two V2O3 structural phases. By simply
tuning the temperature, this systematic study shows that the engineering of V2O3 structural transition induces
large interfacial strain and thus strong magnetic property variations to an amorphous thin film, opening wide
possibilities in implementing strain-driven control of the magnetic behavior without strict requirements on
epitaxial coherence at the interface.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
elasticity; magnetic coupling; magnetism; functional materials; interfaces; nanoparticles; thin films; magnetic techniques
Elenco autori:
Rossi, Giorgio; Vinai, GIOVANNI MARIA; Panaccione, Giancarlo; Torelli, Piero; Orgiani, Pasquale
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