Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2

Heavy-fermion materials have unusual electronic behavior due to a dual localized-itinerant character of 4f electrons. Here, by studying divalent EuRh2Si2, the authors gain insight into the electronic states of the trivalent heavy fermion system YbRh2Si2 and show that it experimentally demonstrates L...

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Main Authors: M. Güttler, A. Generalov, S. I. Fujimori, K. Kummer, A. Chikina, S. Seiro, S. Danzenbächer, Yu. M. Koroteev, E. V. Chulkov, M. Radovic, M. Shi, N. C. Plumb, C. Laubschat, J. W. Allen, C. Krellner, C. Geibel, D. V. Vyalikh
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Language:EN
Published: Nature Portfolio 2019
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Q
Online Access:https://doaj.org/article/3b4f19237f3e47b098f80599653bf10d
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spelling oai:doaj.org-article:3b4f19237f3e47b098f80599653bf10d2021-12-02T14:39:57ZDivalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si210.1038/s41467-019-08688-y2041-1723https://doaj.org/article/3b4f19237f3e47b098f80599653bf10d2019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08688-yhttps://doaj.org/toc/2041-1723Heavy-fermion materials have unusual electronic behavior due to a dual localized-itinerant character of 4f electrons. Here, by studying divalent EuRh2Si2, the authors gain insight into the electronic states of the trivalent heavy fermion system YbRh2Si2 and show that it experimentally demonstrates Luttinger’s theorem.M. GüttlerA. GeneralovS. I. FujimoriK. KummerA. ChikinaS. SeiroS. DanzenbächerYu. M. KoroteevE. V. ChulkovM. RadovicM. ShiN. C. PlumbC. LaubschatJ. W. AllenC. KrellnerC. GeibelD. V. VyalikhNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. Güttler
A. Generalov
S. I. Fujimori
K. Kummer
A. Chikina
S. Seiro
S. Danzenbächer
Yu. M. Koroteev
E. V. Chulkov
M. Radovic
M. Shi
N. C. Plumb
C. Laubschat
J. W. Allen
C. Krellner
C. Geibel
D. V. Vyalikh
Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
description Heavy-fermion materials have unusual electronic behavior due to a dual localized-itinerant character of 4f electrons. Here, by studying divalent EuRh2Si2, the authors gain insight into the electronic states of the trivalent heavy fermion system YbRh2Si2 and show that it experimentally demonstrates Luttinger’s theorem.
format article
author M. Güttler
A. Generalov
S. I. Fujimori
K. Kummer
A. Chikina
S. Seiro
S. Danzenbächer
Yu. M. Koroteev
E. V. Chulkov
M. Radovic
M. Shi
N. C. Plumb
C. Laubschat
J. W. Allen
C. Krellner
C. Geibel
D. V. Vyalikh
author_facet M. Güttler
A. Generalov
S. I. Fujimori
K. Kummer
A. Chikina
S. Seiro
S. Danzenbächer
Yu. M. Koroteev
E. V. Chulkov
M. Radovic
M. Shi
N. C. Plumb
C. Laubschat
J. W. Allen
C. Krellner
C. Geibel
D. V. Vyalikh
author_sort M. Güttler
title Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
title_short Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
title_full Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
title_fullStr Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
title_full_unstemmed Divalent EuRh2Si2 as a reference for the Luttinger theorem and antiferromagnetism in trivalent heavy-fermion YbRh2Si2
title_sort divalent eurh2si2 as a reference for the luttinger theorem and antiferromagnetism in trivalent heavy-fermion ybrh2si2
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/3b4f19237f3e47b098f80599653bf10d
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