PUBLIKATIONSSERVER

Micromagnetic simulation of thickness-dependent magnetization reversal processes in elongated iron nanodots

Download
OA 1.26 MB
Artikel | Veröffentlicht | Englisch
Autor*in
Sudsom, D; Döpke, C; Blachowicz, T; Ehrmann, A
Abstract
Micromagnetic simulations were used to investigate magnetization reversal processes in elongated ferromagnetic nanodots, prepared by combining two half-circles with a rectangle. The micromagnetic simulation program OOMMF is based on dynamically solving the Landau-Lifshitz-Gilbert equation of motion. Material parameters were chosen as typical for Fe (iron). Lateral dimensions were in most simulations chosen as 730 nm x 133 nm, while the dot height was varied between 3 nm and 54 nm. For different in-plane angles of the external magnetic field, varying magnetization reversal processes were found with changing dot thickness, offering a possibility to tailor magnetic states by modifying the thickness of the nanodot.
Erscheinungsjahr
Zeitschriftentitel
Journal of Physics: Conference Series
Band
1391
Artikelnummer
012126
Konferenz
8th International Conference on Mathematical Modeling in Physical Science
Konferenzort
Bratislava, Slovakia
Konferenzdatum
26 August 2019 – 29 August 2019
FH-PUB-ID
626
Volltext(e)
Access Level
OA Open Access
Zuletzt Hochgeladen
2021-01-03T13:33:29Z


Export

Markierte Publikationen

Open Data LibreCat

Suchen in

Google Scholar