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Determination of sub-ps lattice dynamics in FeRh thin films
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Link:
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Autor/in:
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Grimes, M.
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Ueda, H.
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Ozerov, D.
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Pressacco, F.
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Parchenko, S.
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Apseros, A.
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Scholz, M.
Kubota, Y.
Togashi, Tadashi
Tanaka, Y.
Heyderman, L.
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Erscheinungsjahr:
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2022
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Medientyp:
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Text
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Beschreibung:
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Understanding the ultrashort time scale structural dynamics of the FeRh metamagnetic phase transition is a key element in developing a complete explanation of the mechanism driving the evolution from an antiferromagnetic to ferromagnetic state. Using an X-ray free electron laser we determine, with sub-ps time resolution, the time evolution of the (–101) lattice diffraction peak following excitation using a 35 fs laser pulse. The dynamics at higher laser fluence indicates the existence of a transient lattice state distinct from the high temperature ferromagnetic phase. By extracting the lattice temperature and comparing it with values obtained in a quasi-static diffraction measurement, we estimate the electron–phonon coupling in FeRh thin films as a function of laser excitation fluence. A model is presented which demonstrates that the transient state is paramagnetic and can be reached by a subset of the phonon bands. A complete description of the FeRh structural dynamics requires consideration of coupling strength variation across the phonon frequencies. © 2022, The Author(s).
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Lizenz:
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info:eu-repo/semantics/openAccess
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Quellsystem:
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Forschungsinformationssystem der UHH
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- oai:www.edit.fis.uni-hamburg.de:publications/70282a55-9eda-47e1-8dbe-936f150c8c43