Light-induced bound electron states in two-dimensional systems: Contribution to electron transport
Mesoscale and Nanoscale Physics
2020-08-07 v3
Abstract
In two-dimensional (2D) electron systems, an off-resonant high-frequency circularly polarized electromagnetic field can induce the quasi-stationary bound electron states of repulsive scatterers. As a consequence, the resonant scattering of conduction electrons through the quasi-stationary states and the capture of conduction electrons by the states appear. The present theory describes the transport properties of 2D electron gas irradiated by a circularly polarized light, which are modified by these processes. Particularly, it is demonstrated that irradiation of 2D electron systems by the off-resonant field results in the quantum correction to conductivity of resonant kind.
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Cite
@article{arxiv.2006.09806,
title = {Light-induced bound electron states in two-dimensional systems: Contribution to electron transport},
author = {O. V. Kibis and M. V. Boev and V. M. Kovalev},
journal= {arXiv preprint arXiv:2006.09806},
year = {2020}
}
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