info:eu-repo/semantics/article
Model for frequency-dependent nonlinear propagation in 2D-decorated nanowires
Fecha
2021-05Registro en:
Linale, Nicolás Martín; Bonetti, Juan Ignacio; Sánchez, Alfredo Daniel; Fierens, Pablo Ignacio; Grosz, Diego Fernando; Model for frequency-dependent nonlinear propagation in 2D-decorated nanowires; Institute of Electrical and Electronics Engineers; IEEE Journal Of Quantum Electronics; 57; 4; 5-2021; 1-8
0018-9197
CONICET Digital
CONICET
Autor
Linale, Nicolás Martín
Bonetti, Juan Ignacio
Sánchez, Alfredo Daniel
Fierens, Pablo Ignacio
Grosz, Diego Fernando
Resumen
We show that 2D-decorated silicon nanowires exhibit a strong frequency dependence of the real (Kerr) and imaginary (two-photon absorption) nonlinear coefficients. In this setting, we demonstrate that the usual extension of the nonlinear Schrödinger equation used to model propagation in this type of waveguides is rendered inadequate. Hence, we introduce a new modeling framework to tackle the frequency dependence of the nonlinear coefficients in 2D-decorated nanowires, and present an example of its application to the relevant case of supercontinuum generation in graphene- and graphene-oxide decorated silicon nanowires.