Trigonal warping and photo-induced effects on zone boundary phonon in monolayer graphene

Akay, D. (2018) Trigonal warping and photo-induced effects on zone boundary phonon in monolayer graphene. SUPERLATTICES AND MICROSTRUCTURES, 117. pp. 18-24. ISSN 0749-6036,

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Abstract

We have reported the electronic band structure of monolayer graphene when the combined effects arising from the trigonal warp and highest zone-boundary phonons having Aug symmetry with Haldane interaction which induced photo-irradiation effect. On the basis of our model, we have introduced a diagonalization to solve the associated Frohlich Hamiltonian. We have examined that, a trigonal warping effect is introduced on the K and K' points, leading to a dynamical band gap in the graphene electronic band spectrum due to the electron-Aig phonon interaction and Haldane mass interaction. Additionally, the bands exhibited an anisotropy at this point. It is also found that, photo-irradiation effect is quite smaller than the trigonal warp effects in the graphene electronic band spectrum. In spite of this, controllability of the photo induced effects by the Haldane mass will have extensive implications in the graphene. (C) 2018 Elsevier Ltd. All rights reserved.

Item Type: Article
Uncontrolled Keywords: REALIZATION; STATES; MODEL; Dirac electrons; Electron-phonon interactions; Photo-induced effect; Trigonal warping
Subjects: 500 Science > 530 Physics
Divisions: Physics > Institute of Theroretical Physics
Depositing User: Dr. Gernot Deinzer
Date Deposited: 20 Feb 2020 10:02
Last Modified: 20 Feb 2020 10:02
URI: https://pred.uni-regensburg.de/id/eprint/14630

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