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Subpicosecond metamagnetic phase transition in FeRh driven by non-equilibrium electron dynamics

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  • Subpicosecond metamagnetic phase transition in FeRh driven by non-equilibrium electron dynamics
Author
Federico Pressacco
Davide Sangalli
Vojt\v r
Dmytro Kutnyakhov
Jon Arregi
Steinn Agustsson
Günter Brenner
Harald Redlin
Michael Heber
Dmitry Vasilyev
Jure Demsar
Gerd Schönhense
Matteo Gatti
Andrea Marini
Wilfried Wurth
Fausto Sirotti
Keywords
paper
Abstract

Femtosecond light-induced phase transitions between different macroscopic orders provide the possibility to tune the functional properties of condensed matter on ultrafast timescales. In first-order phase transitions, transient non-equilibrium phases and inherent phase coexistence often preclude non-ambiguous detection of transition precursors and their temporal onset. Here, we present a study combining time-resolved photoelectron spectroscopy and ab-initio electron dynamics calculations elucidating the transient subpicosecond processes governing the photoinduced generation of ferromagnetic order in antiferromagnetic FeRh. The transient photoemission spectra are accounted for by assuming that not only the occupation of electronic states is modified during the photoexcitation process. Instead, the photo-generated non-thermal distribution of electrons modifies the electronic band structure. The ferromagnetic phase of FeRh, characterized by a minority band near the Fermi energy, is established 350 \textpm 30 fs after the laser excitation. Ab-initio calculations indicate that the phase transition is initiated by a photoinduced Rh-to-Fe charge transfer.

Year of Publication
2021
Journal
Nature communications
Volume
12
Number of Pages
5088
Date Published
2021/08/24
ISBN Number
2041-1723
URL
https://doi.org/10.1038/s41467-021-25347-3
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