Optical Two-Photon Surface Nonlinear Waves
- Autores: Adamashvili G.T.1
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Afiliações:
- Georgian Technical University
- Edição: Volume 125, Nº 2 (2018)
- Páginas: 285-289
- Seção: Fiber Optics and Integral Optics
- URL: https://ogarev-online.ru/0030-400X/article/view/165777
- DOI: https://doi.org/10.1134/S0030400X18080027
- ID: 165777
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Resumo
A theory of the optical surface two-photon small-amplitude breather in a multilayer system of the isotropic and anisotropic left-hand metamaterials, when there are a graphene monolayer (graphene-like twodimensional material) and a transition layer with impurity optical atoms (semiconductor quantum dots), is constructed. It is shown that the system of constitutive equations for two-photon transitions and wave equation for a surface plasmon–polariton TM mode are reduced to the nonlinear Schrödinger equation with damping. Explicit analytical expressions for a surface two-photon small-amplitude self-induced transparency breather (0π-pulse) are obtained. It is shown that the optical conductivity of graphene leads to the exponential damping of intensity of a surface two-photon nonlinear wave during the propagation. One- and two-photon small-amplitude breathers in graphene are compared, and it is shown that differences between their parameters are substantial.
Sobre autores
G. Adamashvili
Georgian Technical University
Autor responsável pela correspondência
Email: guram-adamashvili@ymail.com
Geórgia, Tbilisi, 0160
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