26 January 2017 High harmonic generation in Landau-quantized graphene subjected to a strong electromagnetic radiation
Hamlet K. Avetissian, Armenhui G. Ghazaryan, Garnik F. Mkrtchian, Khachik V. Sedrakian
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Abstract
We study the nonlinear optical response of Landau-quantized graphene to an intense electromagnetic wave. In particular, we consider the high harmonic generation process. It is shown that one can achieve efficient generation of high harmonics with strong radiation fields—when the work of the wave electric field on the magnetic length is larger than the pump photon energy. In these conditions, the high harmonics generation process enhances for a wide range of the pump wave frequencies and intensities even for significant broadening of Landau levels because of impurities in the graphene.
© 2017 Society of Photo-Optical Instrumentation Engineers (SPIE) 1934-2608/2017/$25.00 © 2017 SPIE
Hamlet K. Avetissian, Armenhui G. Ghazaryan, Garnik F. Mkrtchian, and Khachik V. Sedrakian "High harmonic generation in Landau-quantized graphene subjected to a strong electromagnetic radiation," Journal of Nanophotonics 11(1), 016004 (26 January 2017). https://doi.org/10.1117/1.JNP.11.016004
Received: 19 September 2016; Accepted: 28 December 2016; Published: 26 January 2017
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Cited by 15 scholarly publications.
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KEYWORDS
Graphene

High harmonic generation

Electromagnetic radiation

Magnetism

Electrons

Harmonic generation

Radio propagation

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