Origin of the quasi-quantized Hall effect in ZrTe5

A 3D quantum Hall effect has been reported in Dirac semimetal ZrTe5 due to a magnetic-field-driven Fermi surface instability. Here, the authors show evidence of quasi-quantized Hall response without Fermi surface instability, but they argue that it is due to the interplay of the intrinsic properties...

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Autores principales: S. Galeski, T. Ehmcke, R. Wawrzyńczak, P. M. Lozano, K. Cho, A. Sharma, S. Das, F. Küster, P. Sessi, M. Brando, R. Küchler, A. Markou, M. König, P. Swekis, C. Felser, Y. Sassa, Q. Li, G. Gu, M. V. Zimmermann, O. Ivashko, D. I. Gorbunov, S. Zherlitsyn, T. Förster, S. S. P. Parkin, J. Wosnitza, T. Meng, J. Gooth
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2b752722fa7e44ceb7ca8d18611d9e3e
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spelling oai:doaj.org-article:2b752722fa7e44ceb7ca8d18611d9e3e2021-12-02T15:00:58ZOrigin of the quasi-quantized Hall effect in ZrTe510.1038/s41467-021-23435-y2041-1723https://doaj.org/article/2b752722fa7e44ceb7ca8d18611d9e3e2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23435-yhttps://doaj.org/toc/2041-1723A 3D quantum Hall effect has been reported in Dirac semimetal ZrTe5 due to a magnetic-field-driven Fermi surface instability. Here, the authors show evidence of quasi-quantized Hall response without Fermi surface instability, but they argue that it is due to the interplay of the intrinsic properties of ZrTe5 electronic structure and Dirac semi-metallic character.S. GaleskiT. EhmckeR. WawrzyńczakP. M. LozanoK. ChoA. SharmaS. DasF. KüsterP. SessiM. BrandoR. KüchlerA. MarkouM. KönigP. SwekisC. FelserY. SassaQ. LiG. GuM. V. ZimmermannO. IvashkoD. I. GorbunovS. ZherlitsynT. FörsterS. S. P. ParkinJ. WosnitzaT. MengJ. GoothNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. Galeski
T. Ehmcke
R. Wawrzyńczak
P. M. Lozano
K. Cho
A. Sharma
S. Das
F. Küster
P. Sessi
M. Brando
R. Küchler
A. Markou
M. König
P. Swekis
C. Felser
Y. Sassa
Q. Li
G. Gu
M. V. Zimmermann
O. Ivashko
D. I. Gorbunov
S. Zherlitsyn
T. Förster
S. S. P. Parkin
J. Wosnitza
T. Meng
J. Gooth
Origin of the quasi-quantized Hall effect in ZrTe5
description A 3D quantum Hall effect has been reported in Dirac semimetal ZrTe5 due to a magnetic-field-driven Fermi surface instability. Here, the authors show evidence of quasi-quantized Hall response without Fermi surface instability, but they argue that it is due to the interplay of the intrinsic properties of ZrTe5 electronic structure and Dirac semi-metallic character.
format article
author S. Galeski
T. Ehmcke
R. Wawrzyńczak
P. M. Lozano
K. Cho
A. Sharma
S. Das
F. Küster
P. Sessi
M. Brando
R. Küchler
A. Markou
M. König
P. Swekis
C. Felser
Y. Sassa
Q. Li
G. Gu
M. V. Zimmermann
O. Ivashko
D. I. Gorbunov
S. Zherlitsyn
T. Förster
S. S. P. Parkin
J. Wosnitza
T. Meng
J. Gooth
author_facet S. Galeski
T. Ehmcke
R. Wawrzyńczak
P. M. Lozano
K. Cho
A. Sharma
S. Das
F. Küster
P. Sessi
M. Brando
R. Küchler
A. Markou
M. König
P. Swekis
C. Felser
Y. Sassa
Q. Li
G. Gu
M. V. Zimmermann
O. Ivashko
D. I. Gorbunov
S. Zherlitsyn
T. Förster
S. S. P. Parkin
J. Wosnitza
T. Meng
J. Gooth
author_sort S. Galeski
title Origin of the quasi-quantized Hall effect in ZrTe5
title_short Origin of the quasi-quantized Hall effect in ZrTe5
title_full Origin of the quasi-quantized Hall effect in ZrTe5
title_fullStr Origin of the quasi-quantized Hall effect in ZrTe5
title_full_unstemmed Origin of the quasi-quantized Hall effect in ZrTe5
title_sort origin of the quasi-quantized hall effect in zrte5
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2b752722fa7e44ceb7ca8d18611d9e3e
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