9 July 2022 High harmonic generation with many-body Coulomb interaction in rectangular graphene quantum dots of armchair edge
Babken R. Avchyan, Armenuhi G. Ghazaryan, Samvel S. Israelyan, Khachik V. Sedrakian
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Abstract

High harmonic generation (HHG) in graphene quantum dots of armchair edge by strong coherent electromagnetic radiation taking into account collective electron-electron scattering as well in such nanosystems is considered. The microscopic quantum theory describing the plane quantum dot-laser field nonlinear interaction within the dynamic Hartree–Fock approximation is developed. The many-body Coulomb interaction is considered in the extended Hubbard approximation. The obtained results indicate the significance of the nanostructure lateral size, shape, and bandgap width in HHG process that allows to increase in the quantum yield of high-order harmonics and the cutoff photon energy.

© 2022 Society of Photo-Optical Instrumentation Engineers (SPIE) 1934-2608/2022/$28.00 © 2022 SPIE
Babken R. Avchyan, Armenuhi G. Ghazaryan, Samvel S. Israelyan, and Khachik V. Sedrakian "High harmonic generation with many-body Coulomb interaction in rectangular graphene quantum dots of armchair edge," Journal of Nanophotonics 16(3), 036001 (9 July 2022). https://doi.org/10.1117/1.JNP.16.036001
Received: 5 April 2022; Accepted: 22 June 2022; Published: 9 July 2022
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Cited by 5 scholarly publications.
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KEYWORDS
Graphene

Chemical species

High harmonic generation

Quantum dots

Nanostructures

Polarization

Carbon

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