Temperature-driven massless Kane fermions in HgCdTe crystals

Kane fermions are predicted to be tunable with external parameters such as temperature. Here, Teppe et al. show a band structure evolution of bulk HgCdTe as temperature is tuned across topological phase transition, demonstrating that Kane fermions change sign in rest-mass and remain constant in velo...

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Autores principales: F. Teppe, M. Marcinkiewicz, S. S. Krishtopenko, S. Ruffenach, C. Consejo, A. M. Kadykov, W. Desrat, D. But, W. Knap, J. Ludwig, S. Moon, D. Smirnov, M. Orlita, Z. Jiang, S. V. Morozov, V.I. Gavrilenko, N. N. Mikhailov, S. A. Dvoretskii
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/b73b9f0409f84ff0a6c4ac9d84a492d6
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spelling oai:doaj.org-article:b73b9f0409f84ff0a6c4ac9d84a492d62021-12-02T14:40:11ZTemperature-driven massless Kane fermions in HgCdTe crystals10.1038/ncomms125762041-1723https://doaj.org/article/b73b9f0409f84ff0a6c4ac9d84a492d62016-08-01T00:00:00Zhttps://doi.org/10.1038/ncomms12576https://doaj.org/toc/2041-1723Kane fermions are predicted to be tunable with external parameters such as temperature. Here, Teppe et al. show a band structure evolution of bulk HgCdTe as temperature is tuned across topological phase transition, demonstrating that Kane fermions change sign in rest-mass and remain constant in velocity.F. TeppeM. MarcinkiewiczS. S. KrishtopenkoS. RuffenachC. ConsejoA. M. KadykovW. DesratD. ButW. KnapJ. LudwigS. MoonD. SmirnovM. OrlitaZ. JiangS. V. MorozovV.I. GavrilenkoN. N. MikhailovS. A. DvoretskiiNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
F. Teppe
M. Marcinkiewicz
S. S. Krishtopenko
S. Ruffenach
C. Consejo
A. M. Kadykov
W. Desrat
D. But
W. Knap
J. Ludwig
S. Moon
D. Smirnov
M. Orlita
Z. Jiang
S. V. Morozov
V.I. Gavrilenko
N. N. Mikhailov
S. A. Dvoretskii
Temperature-driven massless Kane fermions in HgCdTe crystals
description Kane fermions are predicted to be tunable with external parameters such as temperature. Here, Teppe et al. show a band structure evolution of bulk HgCdTe as temperature is tuned across topological phase transition, demonstrating that Kane fermions change sign in rest-mass and remain constant in velocity.
format article
author F. Teppe
M. Marcinkiewicz
S. S. Krishtopenko
S. Ruffenach
C. Consejo
A. M. Kadykov
W. Desrat
D. But
W. Knap
J. Ludwig
S. Moon
D. Smirnov
M. Orlita
Z. Jiang
S. V. Morozov
V.I. Gavrilenko
N. N. Mikhailov
S. A. Dvoretskii
author_facet F. Teppe
M. Marcinkiewicz
S. S. Krishtopenko
S. Ruffenach
C. Consejo
A. M. Kadykov
W. Desrat
D. But
W. Knap
J. Ludwig
S. Moon
D. Smirnov
M. Orlita
Z. Jiang
S. V. Morozov
V.I. Gavrilenko
N. N. Mikhailov
S. A. Dvoretskii
author_sort F. Teppe
title Temperature-driven massless Kane fermions in HgCdTe crystals
title_short Temperature-driven massless Kane fermions in HgCdTe crystals
title_full Temperature-driven massless Kane fermions in HgCdTe crystals
title_fullStr Temperature-driven massless Kane fermions in HgCdTe crystals
title_full_unstemmed Temperature-driven massless Kane fermions in HgCdTe crystals
title_sort temperature-driven massless kane fermions in hgcdte crystals
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/b73b9f0409f84ff0a6c4ac9d84a492d6
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