Magneto-elastic coupling of surface acoustical waves with confined spin waves

Grunddaten zu diesem Projekt

Art des ProjektesGefördertes Einzelprojekt
Laufzeit an der Universität Münster03.02.2010 - 31.12.2012

Beschreibung

Coupling between magnetic and mechanic degrees of freedom, mediated by the spin-orbit interaction, has recently gained importance as the key-mechanism of novel promising magneto-electric multiferroics. The aim of this project is the investigation of the dynamic magneto-elastic interaction between spin-waves and surface acoustic waves (SAW) in the technologically important GHz frequency range. First, experiments on model systems, consisting of piezoelectric substrates and magnetostrictive films prepared on top of it, will be carried out. SAW and spin waves, both with well defined wave-vectors will be studied. The interaction has been predicted to have an intriguing, complex dependence on geometry and SAW mode-type including non-reciprocal behavior, but to our knowledge has never been studied experimentally. Second, small confined magnetic micro- and nano-elements will be prepared on the substrate. In this case we expect to demonstrate the coupling of SAW to a single quantized spin-wave mode, selectable by tuning the magnetic field. This feature is highly relevant for the “microwave-assisted” switching, a hot candidate for next generation magnetic memo-ry. Two-dimensional mapping of both SAW and spin-waves will be performed by means of the Brillouin Light Scattering microscopy providing an ultimate time- and space-resolution for investigation of magnetic dynamics.

StichwörterMagneto elastic coupling; acoustical waves; spin waves
FörderkennzeichenBU 2549/1
Mittelgeber / Förderformat
  • DFG - Sachbeihilfe/Einzelförderung

Projektleitung der Universität Münster

Demokritov, Sergej
Professur für Angewandte Physik (Prof. Demokritov)

Antragsteller*innen der Universität Münster

Demokritov, Sergej
Professur für Angewandte Physik (Prof. Demokritov)

Wissenschaftliche Projektmitarbeiter*innen der Universität Münster

Buchmeier, Matthias
Institut für Angewandte Physik