Edge photocurrent in bilayer graphene due to inter-Landau-level transitions

Candussio, S. and Durnev, M. and Slizovskiy, S. and Joetten, T. and Keil, J. and Bel'kov, V. V. and Yin, J. and Yang, Y. and Son, S.-K. and Mishchenko, A. and Fal'ko, V. and Ganichev, S. D. (2021) Edge photocurrent in bilayer graphene due to inter-Landau-level transitions. PHYSICAL REVIEW B, 103 (12): 125408. ISSN 2469-9950, 2469-9969

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Abstract

We report the observation of the resonant excitation of edge photocurrents in bilayer graphene subjected to terahertz radiation and a magnetic field. The resonantly excited edge photocurrent is observed for both interband (at low carrier densities) and intraband (at high densities) transitions between Landau levels (LL). While the intraband LL transitions can be traced to the classical cyclotron resonance (CR) and produce strong resonant features, the interband-LL resonances have quantum nature and lead to the weaker features in the measured photocurrent spectra. The magnitude and polarization properties of the observed features agree with the semiclassical theory of the intraband edge photogalvanic effect, including its Shubnikov-de-Haas oscillations at low temperatures.

Item Type: Article
Uncontrolled Keywords: ELECTRONIC-PROPERTIES; BAND-STRUCTURE; HALL; PLASMONS
Subjects: 500 Science > 530 Physics
Divisions: Physics > Institute of Experimental and Applied Physics > Professor Ganichev > Group Sergey Ganichev
Depositing User: Dr. Gernot Deinzer
Date Deposited: 25 Aug 2022 05:48
Last Modified: 25 Aug 2022 05:48
URI: https://pred.uni-regensburg.de/id/eprint/46946

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