Title :
TLM modelling of nonlinear optical effects in fibre Bragg gratings
Author :
Janyani, V. ; Paul, J.D. ; Vukovic, A. ; Benson, T.M. ; Sewell, P.
Author_Institution :
George Green Inst. for Electromagn. Res., Univ. of Nottingham, UK
Abstract :
A simple and intuitive TLM algorithm has been developed to model nonlinear optical phenomena in photonic bandgap structures such as fibre Bragg gratings. The method is used to simulate periodic nonlinear media having a Kerr nonlinearity. Many phenomena occuring in these devices, such as bistable switching, soliton propagation and limiting, are modelled and discussed. The numerical time-domain approach gives valuable insight into the behaviour of these devices.
Keywords :
Bragg gratings; optical Kerr effect; optical fibre theory; optical limiters; optical solitons; optical switches; photonic band gap; time-domain analysis; transmission line theory; Kerr nonlinearity; TLM modelling; bistable switching; fibre Bragg gratings; limiting; nonlinear optical effects; numerical time-domain approach; photonic bandgap structures; soliton propagation;
Journal_Title :
Optoelectronics, IEE Proceedings -
DOI :
10.1049/ip-opt:20040770