Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe

The conduction electron and magnon interactions are essential for the understanding and development of spintronics and superconductivity. Here the authors show a deep binding energy kink in spin-resolved photoemission spectra which is understood as a signature the many-body spin flip excitation in F...

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Autores principales: E. Młyńczak, M. C. T. D. Müller, P. Gospodarič, T. Heider, I. Aguilera, G. Bihlmayer, M. Gehlmann, M. Jugovac, G. Zamborlini, C. Tusche, S. Suga, V. Feyer, L. Plucinski, C. Friedrich, S. Blügel, C. M. Schneider
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/19c66633b6924d88a311cbfedbd35e16
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spelling oai:doaj.org-article:19c66633b6924d88a311cbfedbd35e162021-12-02T15:35:55ZKink far below the Fermi level reveals new electron-magnon scattering channel in Fe10.1038/s41467-019-08445-12041-1723https://doaj.org/article/19c66633b6924d88a311cbfedbd35e162019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08445-1https://doaj.org/toc/2041-1723The conduction electron and magnon interactions are essential for the understanding and development of spintronics and superconductivity. Here the authors show a deep binding energy kink in spin-resolved photoemission spectra which is understood as a signature the many-body spin flip excitation in Fe single crystal thin film.E. MłyńczakM. C. T. D. MüllerP. GospodaričT. HeiderI. AguileraG. BihlmayerM. GehlmannM. JugovacG. ZamborliniC. TuscheS. SugaV. FeyerL. PlucinskiC. FriedrichS. BlügelC. M. SchneiderNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-5 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
E. Młyńczak
M. C. T. D. Müller
P. Gospodarič
T. Heider
I. Aguilera
G. Bihlmayer
M. Gehlmann
M. Jugovac
G. Zamborlini
C. Tusche
S. Suga
V. Feyer
L. Plucinski
C. Friedrich
S. Blügel
C. M. Schneider
Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
description The conduction electron and magnon interactions are essential for the understanding and development of spintronics and superconductivity. Here the authors show a deep binding energy kink in spin-resolved photoemission spectra which is understood as a signature the many-body spin flip excitation in Fe single crystal thin film.
format article
author E. Młyńczak
M. C. T. D. Müller
P. Gospodarič
T. Heider
I. Aguilera
G. Bihlmayer
M. Gehlmann
M. Jugovac
G. Zamborlini
C. Tusche
S. Suga
V. Feyer
L. Plucinski
C. Friedrich
S. Blügel
C. M. Schneider
author_facet E. Młyńczak
M. C. T. D. Müller
P. Gospodarič
T. Heider
I. Aguilera
G. Bihlmayer
M. Gehlmann
M. Jugovac
G. Zamborlini
C. Tusche
S. Suga
V. Feyer
L. Plucinski
C. Friedrich
S. Blügel
C. M. Schneider
author_sort E. Młyńczak
title Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
title_short Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
title_full Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
title_fullStr Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
title_full_unstemmed Kink far below the Fermi level reveals new electron-magnon scattering channel in Fe
title_sort kink far below the fermi level reveals new electron-magnon scattering channel in fe
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/19c66633b6924d88a311cbfedbd35e16
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