Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2

The transport behavior of the carriers residing in the lowest Landau level is hard to observe in most topological materials. Here, Liu et al. report a surprising angular dependence of the interlayer magnetoresistivity and Hall conductivity arising from the lowest Landau level under high magnetic fie...

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Main Authors: J. Y. Liu, J. Hu, D. Graf, T. Zou, M. Zhu, Y. Shi, S. Che, S. M. A. Radmanesh, C. N. Lau, L. Spinu, H. B. Cao, X. Ke, Z. Q. Mao
Format: Article
Language:English
Published: Nature Publishing Group 2017-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-017-00673-7
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spelling doaj-2fda24c16d5a43aba09a83a3180d5b072021-05-11T07:05:16ZengNature Publishing GroupNature Communications2041-17232017-09-01811810.1038/s41467-017-00673-7Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2J. Y. Liu0J. Hu1D. Graf2T. Zou3M. Zhu4Y. Shi5S. Che6S. M. A. Radmanesh7C. N. Lau8L. Spinu9H. B. Cao10X. Ke11Z. Q. Mao12Department of Physics and Engineering Physics, Tulane UniversityDepartment of Physics and Engineering Physics, Tulane UniversityNational High Magnetic Field LabDepartment of Physics and Astronomy, Michigan State UniversityDepartment of Physics and Astronomy, Michigan State UniversityDepartment of Physics, University of CaliforniaDepartment of Physics, The Ohio State UniversityDepartment of Physics and Advanced Materials Research Institute, University of New OrleansDepartment of Physics, The Ohio State UniversityDepartment of Physics and Advanced Materials Research Institute, University of New OrleansQuantum Condensed Matter Division, Oak Ridge National LaboratoryDepartment of Physics and Astronomy, Michigan State UniversityDepartment of Physics and Engineering Physics, Tulane UniversityThe transport behavior of the carriers residing in the lowest Landau level is hard to observe in most topological materials. Here, Liu et al. report a surprising angular dependence of the interlayer magnetoresistivity and Hall conductivity arising from the lowest Landau level under high magnetic field in type II Weyl semimetal YbMnBi2.https://doi.org/10.1038/s41467-017-00673-7
collection DOAJ
language English
format Article
sources DOAJ
author J. Y. Liu
J. Hu
D. Graf
T. Zou
M. Zhu
Y. Shi
S. Che
S. M. A. Radmanesh
C. N. Lau
L. Spinu
H. B. Cao
X. Ke
Z. Q. Mao
spellingShingle J. Y. Liu
J. Hu
D. Graf
T. Zou
M. Zhu
Y. Shi
S. Che
S. M. A. Radmanesh
C. N. Lau
L. Spinu
H. B. Cao
X. Ke
Z. Q. Mao
Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
Nature Communications
author_facet J. Y. Liu
J. Hu
D. Graf
T. Zou
M. Zhu
Y. Shi
S. Che
S. M. A. Radmanesh
C. N. Lau
L. Spinu
H. B. Cao
X. Ke
Z. Q. Mao
author_sort J. Y. Liu
title Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
title_short Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
title_full Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
title_fullStr Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
title_full_unstemmed Unusual interlayer quantum transport behavior caused by the zeroth Landau level in YbMnBi2
title_sort unusual interlayer quantum transport behavior caused by the zeroth landau level in ybmnbi2
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2017-09-01
description The transport behavior of the carriers residing in the lowest Landau level is hard to observe in most topological materials. Here, Liu et al. report a surprising angular dependence of the interlayer magnetoresistivity and Hall conductivity arising from the lowest Landau level under high magnetic field in type II Weyl semimetal YbMnBi2.
url https://doi.org/10.1038/s41467-017-00673-7
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