Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects

Magneto-oscillations have revealed many interesting phenomena in graphene and quantum Hall systems, but they are typically measured at low currents and in equilibrium. Here, the authors report several non-equilibrium quantum effects observed in magneto-oscillations in graphene at high currents.

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Autores principales: M. T. Greenaway, P. Kumaravadivel, J. Wengraf, L. A. Ponomarenko, A. I. Berdyugin, J. Li, J. H. Edgar, R. Krishna Kumar, A. K. Geim, L. Eaves
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/1df82ff8d310482793130a1ac46c1b13
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spelling oai:doaj.org-article:1df82ff8d310482793130a1ac46c1b132021-11-08T11:06:19ZGraphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects10.1038/s41467-021-26663-42041-1723https://doaj.org/article/1df82ff8d310482793130a1ac46c1b132021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26663-4https://doaj.org/toc/2041-1723Magneto-oscillations have revealed many interesting phenomena in graphene and quantum Hall systems, but they are typically measured at low currents and in equilibrium. Here, the authors report several non-equilibrium quantum effects observed in magneto-oscillations in graphene at high currents.M. T. GreenawayP. KumaravadivelJ. WengrafL. A. PonomarenkoA. I. BerdyuginJ. LiJ. H. EdgarR. Krishna KumarA. K. GeimL. EavesNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-6 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. T. Greenaway
P. Kumaravadivel
J. Wengraf
L. A. Ponomarenko
A. I. Berdyugin
J. Li
J. H. Edgar
R. Krishna Kumar
A. K. Geim
L. Eaves
Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
description Magneto-oscillations have revealed many interesting phenomena in graphene and quantum Hall systems, but they are typically measured at low currents and in equilibrium. Here, the authors report several non-equilibrium quantum effects observed in magneto-oscillations in graphene at high currents.
format article
author M. T. Greenaway
P. Kumaravadivel
J. Wengraf
L. A. Ponomarenko
A. I. Berdyugin
J. Li
J. H. Edgar
R. Krishna Kumar
A. K. Geim
L. Eaves
author_facet M. T. Greenaway
P. Kumaravadivel
J. Wengraf
L. A. Ponomarenko
A. I. Berdyugin
J. Li
J. H. Edgar
R. Krishna Kumar
A. K. Geim
L. Eaves
author_sort M. T. Greenaway
title Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
title_short Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
title_full Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
title_fullStr Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
title_full_unstemmed Graphene’s non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
title_sort graphene’s non-equilibrium fermions reveal doppler-shifted magnetophonon resonances accompanied by mach supersonic and landau velocity effects
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/1df82ff8d310482793130a1ac46c1b13
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