Difference frequency generation of surface plasmon-polaritons in Landau quantized graphene
Mesoscale and Nanoscale Physics
2018-09-12 v1
Abstract
We develop a rigorous quantum-mechanical theory of the nonlinear optical process of difference frequency generation of surface plasmon-polaritons in Landau-quantized graphene. Although forbidden in the electric-dipole approximation, the second-order susceptibility is surprisingly high, equivalent to the bulk magnitude above m/V. We consider the graphene monolayer as a nonlinear optical component of a monolithic photonic chip with integrated pump fields. The nonlinear power conversion efficiency of the order of tens W/W is predicted from structures of m size. We investigate a variety of waveguide configurations to identify the optimal geometry for maximum efficiency.
Keywords
Cite
@article{arxiv.1806.04722,
title = {Difference frequency generation of surface plasmon-polaritons in Landau quantized graphene},
author = {A. Ryan Kutayiah and Mikhail Tokman and Yongrui Wang and Alexey Belyanin},
journal= {arXiv preprint arXiv:1806.04722},
year = {2018}
}