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Magnetoelectronic properties of graphene dressed by a high-frequency field

2015/11/30 by O. V. Kibis, S. Morina, K. Dini +1
Computer Science · Materials Science · Mathematics · Physics and Astronomy · #Absorption (acoustics) #Condensed matter physics #Electromagnetic field #Electron #Field (mathematics) #Graphene #Graphene research and applications #Magnetic field #Mathematics #Optics #Physics #Quantum Information and Cryptography #Quantum and electron transport phenomena #Quantum electrodynamics #Quantum mechanics #cond-mat.mes-hall

paper · pdf · doi:10.1103/physrevb.93.115420

published as Phys. Rev. B 93, 115420 (2016) · Published version

openalex publication_date 2016/03/14 · arxiv created 2016/03/23 · arxiv updated 2016/03/24 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

Solving the Schr"odinger problem for electrons in graphene subjected to both a stationary magnetic field and a strong high-frequency electromagnetic wave (dressing field), we found that the dressing field drastically changes the structure of Landau levels in graphene. As a consequence, the magnetoelectronic properties of graphene are very sensitive to the dressing field. Particularly, it is demonstrated theoretically that the dressing field strongly changes the optical spectra and the Shubnikov--de Haas oscillations. As a result, the developed theory opens a way for controlling magnetoelectronic properties of graphene with light.

Citations