Title :
Disorder-induced multiple-scattering in photonic-crystal waveguides
Author :
Mazoyer, S. ; Hugonin, J.P. ; Lalanne, P.
Author_Institution :
Lab. Charles Fabry, Univ Paris-Sud, Palaiseau, France
Abstract :
Slow light in photonic-crystal waveguides (PhCW) is a promising solution for time-domain processing of optical signals and for the enhancement of nonlinear optical effects. Slow light regime is however strongly impacted by random fabrication imperfections and the resulting losses are a critical hurdle limiting the optical delays and the interaction lengths. Therefore perturbation theories have been developed to determine how this inevitable fabrication disorder impacts on the slow light propagation in periodic waveguides. However these studies are only valid for imperfections that hardly affect the propagating mode. In this paper, a new coupled-Bloch mode scattering formalism that overcomes the present limitations of perturbation approaches. The formalism takes into account multiple scattering, localization effects and out-of-plane leakage, and allows a quantitative prediction of all the statistical transport coefficients, including averaged values as well as probability distributions.
Keywords :
light propagation; light scattering; optical fabrication; optical information processing; optical waveguides; perturbation theory; photonic crystals; probability; slow light; coupled-Bloch mode scattering formalism; fabrication disorder-induced multiple-scattering; localization effects; nonlinear optical effects enhancement; optical delays; optical signal processing; out-of-plane leakage; periodic waveguides; perturbation theories; photonic-crystal waveguide; probability distributions; random fabrication imperfection; slow light propagation; statistical transport coefficient prediction; time-domain processing; Light scattering; Nonlinear optics; Optical device fabrication; Optical propagation; Optical scattering; Optical waveguide theory; Optical waveguides; Particle scattering; Slow light; Time domain analysis;
Conference_Titel :
Lasers and Electro-Optics 2009 and the European Quantum Electronics Conference. CLEO Europe - EQEC 2009. European Conference on
Conference_Location :
Munich
Print_ISBN :
978-1-4244-4079-5
Electronic_ISBN :
978-1-4244-4080-1
DOI :
10.1109/CLEOE-EQEC.2009.5194797