Terahertz and gigahertz magneto-ratchets in graphene-based 2D metamaterials

Fuente: arXiv
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Auteurs principaux: Hild, Marcel, Mönch, Erwin, Golub, Leonid E., Dmitriev, Ivan A., Yahniuk, Ivan, Amann, Katharina, Amann, Julia, Eroms, Jonathan, Wunderlich, Jörg, Weiss, Dieter, Consejo, Christophe, Bray, Cedric, Maussang, Kenneth, Teppe, Frederic, Gumenjuk-Sichevska, Joanna, Watanabe, Kenji, Taniguchi, Takashi, Ganichev, Sergey D.
Format: Preprint
Publié: 2024
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author Hild, Marcel
Mönch, Erwin
Golub, Leonid E.
Dmitriev, Ivan A.
Yahniuk, Ivan
Amann, Katharina
Amann, Julia
Eroms, Jonathan
Wunderlich, Jörg
Weiss, Dieter
Consejo, Christophe
Bray, Cedric
Maussang, Kenneth
Teppe, Frederic
Gumenjuk-Sichevska, Joanna
Watanabe, Kenji
Taniguchi, Takashi
Ganichev, Sergey D.
author_facet Hild, Marcel
Mönch, Erwin
Golub, Leonid E.
Dmitriev, Ivan A.
Yahniuk, Ivan
Amann, Katharina
Amann, Julia
Eroms, Jonathan
Wunderlich, Jörg
Weiss, Dieter
Consejo, Christophe
Bray, Cedric
Maussang, Kenneth
Teppe, Frederic
Gumenjuk-Sichevska, Joanna
Watanabe, Kenji
Taniguchi, Takashi
Ganichev, Sergey D.
contents We report on the observation and study of the magneto-ratchet effect in a graphene-based two-dimensional metamaterial formed by a graphite gate that is placed below a graphene monolayer and patterned with an array of triangular antidots. We demonstrate that terahertz/gigahertz excitation of the metamaterial leads to sign-alternating magneto-oscillations with an amplitude that exceeds the ratchet current at zero magnetic field by orders of magnitude. The oscillations are shown to be related to the Shubnikov-de Haas effect. In addition to the giant ratchet current oscillations we detect resonant ratchet currents caused by the cyclotron and electron spin resonances. The results are well described by the developed theory considering the magneto-ratchet effect caused by the interplay of the near-field radiation and the nonuniform periodic electrostatic potential of the metamaterial controlled by the gate voltages.
format Preprint
id arxiv_https___arxiv_org_abs_2407_15597
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Terahertz and gigahertz magneto-ratchets in graphene-based 2D metamaterials
Hild, Marcel
Mönch, Erwin
Golub, Leonid E.
Dmitriev, Ivan A.
Yahniuk, Ivan
Amann, Katharina
Amann, Julia
Eroms, Jonathan
Wunderlich, Jörg
Weiss, Dieter
Consejo, Christophe
Bray, Cedric
Maussang, Kenneth
Teppe, Frederic
Gumenjuk-Sichevska, Joanna
Watanabe, Kenji
Taniguchi, Takashi
Ganichev, Sergey D.
Mesoscale and Nanoscale Physics
We report on the observation and study of the magneto-ratchet effect in a graphene-based two-dimensional metamaterial formed by a graphite gate that is placed below a graphene monolayer and patterned with an array of triangular antidots. We demonstrate that terahertz/gigahertz excitation of the metamaterial leads to sign-alternating magneto-oscillations with an amplitude that exceeds the ratchet current at zero magnetic field by orders of magnitude. The oscillations are shown to be related to the Shubnikov-de Haas effect. In addition to the giant ratchet current oscillations we detect resonant ratchet currents caused by the cyclotron and electron spin resonances. The results are well described by the developed theory considering the magneto-ratchet effect caused by the interplay of the near-field radiation and the nonuniform periodic electrostatic potential of the metamaterial controlled by the gate voltages.
title Terahertz and gigahertz magneto-ratchets in graphene-based 2D metamaterials
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2407.15597