Szczegóły publikacji

Opis bibliograficzny

x_Size-dependent bistability of magnetic states in soft magnetic cap arrays / Krupiński Michał // Nanotechnology. — 2024 — vol. 35, s. 225701, DOI 10.1088/1361-6528/ad2c5c.

Autorzy (8)

Słowa kluczowe

Dane bibliometryczne

ID BaDAP229
DOI10.1088/1361-6528/ad2c5c
Punktacja ministerialna100
Rok publikacji2024
Impact Factor2.8
Otwarty dostęptak
Typ publikacjiartykuł
Czasopismo/seriaNanotechnology

Abstract

We have investigated the size dependent energy barrier regarding the transition between magnetic vortex and collinear states in dense arrays of magnetic cap structures hosting magnetic vortices. The cap structures were formed by the deposition of soft magnetic thin films on top of large arrays of densely packed polystyrene spheres. The energy barrier associated with the magnetic field assisted switching from a collinear magnetic state to a non-uniform vortex state (or vice versa) was tuned by tailoring the diameter and thickness of the soft magnetic caps. At a sufficient temperature, known as the bifurcation temperature, the thermal energy overcomes this energy barrier and magnetic bistability with a hysteresis-free switching occurs between the two magnetic states. In magnetic caps with a fixed thickness, the bifurcation temperature decreases with increasing cap diameter. On the other hand, for a fixed diameter, the bifurcation temperature increases with an increase in film thickness of the cap structure. This study demonstrates that the bifurcation temperature can be easily tailored by changing the magnetostatic energy contribution which in turn affects the energy barrier and thus the magnetic bistability.

Publikacje, które mogą Cię zainteresować

artykuł
#251Rok dodania: 2023
Superexchange interaction in insulating EuZn2P2 / Ptok Andrzej, Singh Karan // PHYSICAL REVIEW D. — 2023 — vol. 108, s. 054402.
artykuł
#227Rok dodania: 2024
x_Quarkonium dynamics in the quantum Brownian regime with non-abelian quantum master equations / Delorme Stéphane // Journal of High Energy Physics. — 2024 — vol. 06, s. 060, DOI 10.1007/JHEP06(2024)060.