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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Nature Portfolio
2021
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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) |
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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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