Authors | محسن حاتمی,محمود نیکو فرد,مجتبی دهقانی فیروزابادی |
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Journal | Journal of Nonlinear Optical Physics & Materials |
IF | ثبت نشده |
Paper Type | Full Paper |
Published At | 2023-11-29 |
Journal Grade | Scientific - research |
Journal Type | Electronic |
Journal Country | Iran, Islamic Republic Of |
Journal Index | SCOPUS ,JCR |
Abstract
Graphene, with its broadband optical properties and high optical nonlinearity, shows promise as an ultrathin material compatible with CMOS technology for all-optical signal processing in integrated photonics. This paper presents simulation, analysis, and design of a novel graphene-integrated nonlinear hybrid plasmonic waveguide. Finite element simulations study the Kerr nonlinear effect of extra graphene layers. The enhanced nonlinear parameter of γ=7.36×108 W−1 Km−1 and nonlinear figure-of-merit (FOM) of 2.10 achieved at 1,550nm exceed those of silicon-on-insulator (SOI) hybrid plasmonic waveguides. The proposed graphene-integrated hybrid plasmonic waveguide (GHPW) demonstrates high Kerr nonlinearity and FOM, indicating potential for nonlinear all-optical signal processing.
tags: Hybrid plasmonic waveguide, Kerr effect, graphene, nonlinear coefficient