Magnetization reversal phenomena in thin films presenting stripe domains

Author:

López Duque PORCID,Goijman DORCID,Sarmiento A,Ramírez GORCID,Avilés-Félix L,Gómez J,Pérez Martínez A,Eddrief M,Butera AORCID,Vavassori P,Milano JORCID,Niebieskikwiat DORCID

Abstract

Abstract We present a study of the properties related to the magnetization reversal process in two thin-film samples with magnetic stripe domains: Fe0.82Ga0.18 (Fe–Ga) and Ni0.81Fe0.19 (permalloy). In Fe–Ga thin films, we focus on magnetization reversal driven by thermal activation by considering the magnetic viscosity behavior. The results suggest that the reversal process occurs gradually, where the magnetization switches direction via 10 nm-long jumps of the magnetic domain walls. On the other hand, vectorial hysteresis loops were performed in permalloy thin films with the aim to study the behavior of the transverse magnetization component (perpendicular to the applied field) during the magnetization reversal process. We show that the measurement of the transversal magnetization component shows a much higher sensitivity for the determination of the in-plane magnetic anisotropy than the usual hysteresis loops where the magnetization is parallel to the applied field. Moreover, this allows to highlight the competition between the intrinsic and rotatable anisotropies in thin films that present stripe domains.

Funder

HORIZON EUROPE Marie Sklodowska-Curie Actions

Secretaría de Investigación, Internacionales y Posgrado, Universidad Nacional de Cuyo

Fondo para la Investigación Científica y Tecnológica

Publisher

IOP Publishing

Reference31 articles.

1. Note By applying a magnetic field in the sample plane and then releasing it, stripe domains align along the direction of the field applied

2. A New Type of Magnetic Domain Structure in Negative Magnetostriction Ni-Fe Films

3. Crossover to striped magnetic domains in Fe1−xGax magnetostrictive thin films

4. Magnetic domain crossover in FePt thin films

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