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Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction

We combine ultrafast X-ray diffraction (UXRD) and time-resolved Magneto-Optical Kerr Effect (MOKE) measurements to monitor the strain pulses in laser-excited TbFe(2)/Nb heterostructures. Spatial separation of the Nb detection layer from the laser excitation region allows for a background-free charac...

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Autores principales: Zeuschner, S. P., Parpiiev, T., Pezeril, T., Hillion, A., Dumesnil, K., Anane, A., Pudell, J., Willig, L., Rössle, M., Herzog, M., von Reppert, A., Bargheer, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Crystallographic Association 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6447272/
https://www.ncbi.nlm.nih.gov/pubmed/31041360
http://dx.doi.org/10.1063/1.5084140
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author Zeuschner, S. P.
Parpiiev, T.
Pezeril, T.
Hillion, A.
Dumesnil, K.
Anane, A.
Pudell, J.
Willig, L.
Rössle, M.
Herzog, M.
von Reppert, A.
Bargheer, M.
author_facet Zeuschner, S. P.
Parpiiev, T.
Pezeril, T.
Hillion, A.
Dumesnil, K.
Anane, A.
Pudell, J.
Willig, L.
Rössle, M.
Herzog, M.
von Reppert, A.
Bargheer, M.
author_sort Zeuschner, S. P.
collection PubMed
description We combine ultrafast X-ray diffraction (UXRD) and time-resolved Magneto-Optical Kerr Effect (MOKE) measurements to monitor the strain pulses in laser-excited TbFe(2)/Nb heterostructures. Spatial separation of the Nb detection layer from the laser excitation region allows for a background-free characterization of the laser-generated strain pulses. We clearly observe symmetric bipolar strain pulses if the excited TbFe(2) surface terminates the sample and a decomposition of the strain wavepacket into an asymmetric bipolar and a unipolar pulse, if a SiO(2) glass capping layer covers the excited TbFe(2) layer. The inverse magnetostriction of the temporally separated unipolar strain pulses in this sample leads to a MOKE signal that linearly depends on the strain pulse amplitude measured through UXRD. Linear chain model simulations accurately predict the timing and shape of UXRD and MOKE signals that are caused by the strain reflections from multiple interfaces in the heterostructure.
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spelling pubmed-64472722019-04-30 Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction Zeuschner, S. P. Parpiiev, T. Pezeril, T. Hillion, A. Dumesnil, K. Anane, A. Pudell, J. Willig, L. Rössle, M. Herzog, M. von Reppert, A. Bargheer, M. Struct Dyn ARTICLES We combine ultrafast X-ray diffraction (UXRD) and time-resolved Magneto-Optical Kerr Effect (MOKE) measurements to monitor the strain pulses in laser-excited TbFe(2)/Nb heterostructures. Spatial separation of the Nb detection layer from the laser excitation region allows for a background-free characterization of the laser-generated strain pulses. We clearly observe symmetric bipolar strain pulses if the excited TbFe(2) surface terminates the sample and a decomposition of the strain wavepacket into an asymmetric bipolar and a unipolar pulse, if a SiO(2) glass capping layer covers the excited TbFe(2) layer. The inverse magnetostriction of the temporally separated unipolar strain pulses in this sample leads to a MOKE signal that linearly depends on the strain pulse amplitude measured through UXRD. Linear chain model simulations accurately predict the timing and shape of UXRD and MOKE signals that are caused by the strain reflections from multiple interfaces in the heterostructure. American Crystallographic Association 2019-03-20 /pmc/articles/PMC6447272/ /pubmed/31041360 http://dx.doi.org/10.1063/1.5084140 Text en © 2019 Author(s). 2329-7778/2019/6(2)/024302/8 All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle ARTICLES
Zeuschner, S. P.
Parpiiev, T.
Pezeril, T.
Hillion, A.
Dumesnil, K.
Anane, A.
Pudell, J.
Willig, L.
Rössle, M.
Herzog, M.
von Reppert, A.
Bargheer, M.
Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title_full Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title_fullStr Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title_full_unstemmed Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title_short Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
title_sort tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction
topic ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6447272/
https://www.ncbi.nlm.nih.gov/pubmed/31041360
http://dx.doi.org/10.1063/1.5084140
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