Title :
A New Formulation of Coupled Propagation Equations in Periodic Nanophotonic Waveguides for the Treatment of Kerr-Induced Nonlinearities
Author :
Kamalakis, Thomas ; Sphicopoulos, Thomas
Author_Institution :
Univ. of Athens, Athens
Abstract :
Nonlinear phenomena could be used to implement important signal processing functionalities in future nanophotonic integrated optical devices. In this paper, a semi-analytical model incorporating the influence of Kerr-induced nonlinearity in the propagation of an optical signal inside a periodic nanophotonic waveguide is derived. The approach consists of a system of nonlinear coupled mode propagation equations and is applicable to both single and multimode waveguides. The influence of the mode group velocity on the value of the self-phase modulation coefficient gamma is analyzed and the impact of higher order nonlinear terms is also investigated both at the middle and edge of the guided band. The model is also applied to estimate the nonlinear coupling coefficients of a photonic crystal waveguide coupler and provides an efficient method to analyze the influence of nonlinear phenomena in periodic nanophotonic waveguide devices.
Keywords :
coupled mode analysis; micro-optics; nanotechnology; optical Kerr effect; optical couplers; optical waveguide theory; photonic crystals; self-phase modulation; Kerr-induced nonlinearity; mode group velocity; nonlinear coupled mode propagation equations; periodic nanophotonic waveguide; photonic crystal waveguide coupler; self-phase modulation coefficient; Couplings; Nanoscale devices; Nonlinear equations; Nonlinear optical devices; Nonlinear optics; Optical devices; Optical modulation; Optical propagation; Optical signal processing; Optical waveguides; Electromagnetic propagation in nonlinear media; nonlinear optics; nonlinear wave propagation; periodic structures;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2007.902933