Interplanar coupling-dependent magnetoresistivity in high-purity layered metals

In Weyl semimetals, unusual electronic transport phenomena are predicted to occur, such as an axial anomaly which violates the conservation of chiral fermions. Here, the authors evidence such behaviour via the occurrence of negative magnetoresistance in layered high-purity non-magnetic metals.

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Auteurs principaux: N. Kikugawa, P. Goswami, A. Kiswandhi, E. S. Choi, D. Graf, R. E. Baumbach, J. S. Brooks, K. Sugii, Y. Iida, M. Nishio, S. Uji, T. Terashima, P.M.C. Rourke, N. E. Hussey, H. Takatsu, S. Yonezawa, Y. Maeno, L. Balicas
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Langue:EN
Publié: Nature Portfolio 2016
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spelling oai:doaj.org-article:9ec38db1fb5f43c0bc8d2e339668f2912021-12-02T14:39:55ZInterplanar coupling-dependent magnetoresistivity in high-purity layered metals10.1038/ncomms109032041-1723https://doaj.org/article/9ec38db1fb5f43c0bc8d2e339668f2912016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10903https://doaj.org/toc/2041-1723In Weyl semimetals, unusual electronic transport phenomena are predicted to occur, such as an axial anomaly which violates the conservation of chiral fermions. Here, the authors evidence such behaviour via the occurrence of negative magnetoresistance in layered high-purity non-magnetic metals.N. KikugawaP. GoswamiA. KiswandhiE. S. ChoiD. GrafR. E. BaumbachJ. S. BrooksK. SugiiY. IidaM. NishioS. UjiT. TerashimaP.M.C. RourkeN. E. HusseyH. TakatsuS. YonezawaY. MaenoL. BalicasNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
N. Kikugawa
P. Goswami
A. Kiswandhi
E. S. Choi
D. Graf
R. E. Baumbach
J. S. Brooks
K. Sugii
Y. Iida
M. Nishio
S. Uji
T. Terashima
P.M.C. Rourke
N. E. Hussey
H. Takatsu
S. Yonezawa
Y. Maeno
L. Balicas
Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
description In Weyl semimetals, unusual electronic transport phenomena are predicted to occur, such as an axial anomaly which violates the conservation of chiral fermions. Here, the authors evidence such behaviour via the occurrence of negative magnetoresistance in layered high-purity non-magnetic metals.
format article
author N. Kikugawa
P. Goswami
A. Kiswandhi
E. S. Choi
D. Graf
R. E. Baumbach
J. S. Brooks
K. Sugii
Y. Iida
M. Nishio
S. Uji
T. Terashima
P.M.C. Rourke
N. E. Hussey
H. Takatsu
S. Yonezawa
Y. Maeno
L. Balicas
author_facet N. Kikugawa
P. Goswami
A. Kiswandhi
E. S. Choi
D. Graf
R. E. Baumbach
J. S. Brooks
K. Sugii
Y. Iida
M. Nishio
S. Uji
T. Terashima
P.M.C. Rourke
N. E. Hussey
H. Takatsu
S. Yonezawa
Y. Maeno
L. Balicas
author_sort N. Kikugawa
title Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
title_short Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
title_full Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
title_fullStr Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
title_full_unstemmed Interplanar coupling-dependent magnetoresistivity in high-purity layered metals
title_sort interplanar coupling-dependent magnetoresistivity in high-purity layered metals
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/9ec38db1fb5f43c0bc8d2e339668f291
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