Exchange Interaction Between Magnetic Adatoms in Irradiated Graphene
ORAL
Abstract
We present a theory for the non-equilibrium RKKY interaction in graphene irradiated by circularly polarized light. A k.p theory of the graphene Floquet Hamiltonian is developed, which provides a successive approximation scheme as the light-matter coupling strength is increased. Based on the Floquet k.p Hamiltonian, we calculate the real-space Floquet Green’s functions and the time-averaged RKKY interaction using Floquet-Keldysh formalism. We find that optical illumination generally suppresses the exchange interaction in undoped graphene, due to a band gap opened at the Dirac point. Results for doped graphene will also be presented.
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Presenters
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Modi Ke
Univ of Alabama - Tuscaloosa
Authors
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Modi Ke
Univ of Alabama - Tuscaloosa
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Mahmoud M. Asmar
Physics and Astronomy, University of Alabama, Univ of Alabama - Tuscaloosa
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Wang Kong Tse
Department of Physics and Astronomy, The University of Alabama, Physics and Astronomy, University of Alabama, Univ of Alabama - Tuscaloosa, Department of Physics and Astronomy, University of Alabama, Tuscaloosa