Accelerating the Laser‐Induced Phase Transition in Nanostructured FeRh via Plasmonic Absorption

Author:

Mattern M.1ORCID,Pudell J.‐E.123ORCID,Arregi J. A.4ORCID,Zlámal J.45ORCID,Kalousek R.45ORCID,Uhlíř V.45ORCID,Rössle M.2ORCID,Bargheer M.12ORCID

Affiliation:

1. Institut für Physik und Astronomie Universität Potsdam 14476 Potsdam Germany

2. Helmholtz‐Zentrum Berlin für Materialien und Energie GmbH Wilhelm‐Conrad‐Röntgen Campus, BESSY II 12489 Berlin Germany

3. European XFEL 22869 Schenefeld Germany

4. CEITEC BUT Brno University of Technology Brno 61200 Czech Republic

5. Institute of Physical Engineering Brno University of Technology Brno 61669 Czech Republic

Abstract

AbstractBy ultrafast x‐ray diffraction (UXRD), it is shown that the laser‐induced magnetostructural phase transition in FeRh nanoislands proceeds faster and more complete than in continuous films. An intrinsic 8 ps timescale is observed for the nucleation of ferromagnetic (FM) domains in the optically excited fraction of both types of samples. For the continuous film, the substrate‐near regions are not directly exposed to light and are only slowly transformed to the FM state after heating above the transition temperature via near‐equilibrium heat transport. Numerical modeling of the absorption in the investigated nanoislands reveals a strong plasmonic contribution near the FeRh/MgO interface. The larger absorption and the optical excitation of the electrons in nearly the entire volume of the nanoislands enables a rapid phase transition throughout the entire volume at the intrinsic nucleation timescale.

Funder

Deutsche Forschungsgemeinschaft

Bundesministerium für Bildung und Forschung

Ministry of Education, Youth and Science

Publisher

Wiley

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