Fachgruppe Nanostrukturierte Materialien    


Publikationen
 
Home

Lehre
 Vorlesungen & Semin.
 Angebote f. Studenten

Forschung
 Themen
 Projekte
 Publikationen

Labore/Techniken
Anschrift
 Ausstattung
Röntgenbeugung

Mitarbeiter
 Übersicht
 offene Stellen

Links
 Universität Halle
 Institut für Physik
 IZM
 Andere Links

Institut f. Physik
FG Nanostrukturierte Materialien
Martin-Luther-Universitat
Halle-Wittenberg
Von-Danckelmann-Platz 3,
D-06120 Halle, Germany

Tel.:  +49 345 55 25321
Fax.: +49 345 55 27034

[Veröffentlichungen] [Patente] [Graduierungsarbeiten] [Berichte] [Poster]
Abstract

Mohammad Tomal Hossain, Sergi Lendinez, Laura Scheuer, Evangelos Th. Papaioannou and M. Benjamin Jungfleisch
Probing anisotropy in epitaxial Fe/Pt bilayers by spin-orbit torque ferromagnetic resonance
Appl. Phys. Lett. 119 (2022-04-27 17:05:54), 212407
DOI: 10.1063/5.0071151


We report the generation and detection of spin–orbit torque ferromagnetic resonance (STFMR) in micropatterned epitaxial Fe/Pt bilayers grown by molecular beam epitaxy. The magnetic field dependent measurements at an in-plane magnetic field angle of 45° with respect to the microwave-current direction reveal the presence of two distinct voltage peaks indicative of a strong magnetic anisotropy. We show that STFMR can be employed to probe the underlying magnetic properties, including the anisotropies in the Fe layer. We compare our STFMR results with broadband ferromagnetic resonance spectroscopy and magneto-optical Kerr effect measurements of the unpatterned bilayer thin films. The experimental STFMR measurements are interpreted using an analytical formalism and further confirmed using micromagnetic modeling which sheds light on the field-dependent magnetization alignment in the microstructures responsible for the STFMR rectification. Our results demonstrate a simple and efficient method for determining magnetic anisotropies in microstructures by means of rf spectroscopy.

Impressum Copyright ©  Center of Materials Science, Halle, Germany. All rights reserved.