Element-Specific Magnetization Dynamics of Complex Magnetic Systems Probed by Ultrafast Magneto-Optical Spectroscopy

Author:

von Korff Schmising ClemensORCID,Willems FelixORCID,Sharma Sangeeta,Yao Kelvin,Borchert MartinORCID,Hennecke MartinORCID,Schick DanielORCID,Radu Ilie,Strüber ChristianORCID,Engel Dieter W.ORCID,Shokeen Vishal,Buck Jens,Bagschik Kai,Viefhaus JensORCID,Hartmann Gregor,Manschwetus Bastian,Grunewald Soeren,Düsterer StefanORCID,Jal EmmanuelleORCID,Vodungbo BorisORCID,Lüning Jan,Eisebitt StefanORCID

Abstract

The vision to manipulate and control magnetism with light is driven on the one hand by fundamental questions of direct and indirect photon-spin interactions, and on the other hand by the necessity to cope with ever growing data volumes, requiring radically new approaches on how to write, read and process information. Here, we present two complementary experimental geometries to access the element-specific magnetization dynamics of complex magnetic systems via ultrafast magneto-optical spectroscopy in the extreme ultraviolet spectral range. First, we employ linearly polarized radiation of a free electron laser facility to demonstrate decoupled dynamics of the two sublattices of an FeGd alloy, a prerequisite for all-optical magnetization switching. Second, we use circularly polarized radiation generated in a laboratory-based high harmonic generation setup to show optical inter-site spin transfer in a CoPt alloy, a mechanism which only very recently has been predicted to mediate ultrafast metamagnetic phase transitions.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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