DocumentCode :
3200159
Title :
FD-TD simulation of optical soliton propagation and scattering in 2-D waveguides
Author :
Goorjian, P.M. ; Taflove, Allen ; Joseph, R.M.
Author_Institution :
NASA Ames Res. Center, Moffett Field, CA, USA
fYear :
1992
fDate :
18-25 June 1992
Firstpage :
262
Abstract :
A novel algorithm has been developed that permits the direct time integration of Maxwell´s equations in 2-D for material media having linear and nonlinear instantaneous and Lorentz-dispersive effects in the electric polarization. The optical carrier is retained in this approach. The fundamental innovation is the treatment of the linear and nonlinear convolution integrals which describe the dispersion as new dependent variables. By differentiating these convolutions in the time domain, an equivalent system of coupled, nonlinear, second-order ordinary differential equations is derived. These equations together with Maxwell´s equations form the system that is solved to determine the electromagnetic fields in nonlinear dispersive media. The nonlinear modeling takes into account such quantum effects as the Kerr and Raman interactions. The proposed approach is robust and permits the modeling of optical soliton propagation, scattering, and switching directly from the full-vector, nonlinear Maxwell´s equations for integrated optical structures.<>
Keywords :
Maxwell equations; finite difference time-domain analysis; light scattering; optical solitons; optical waveguide theory; 2-D waveguides; FDTD simulation; Kerr interaction; Lorentz-dispersive effects; Maxwell´s equations; Raman interactions; algorithm; coupled nonlinear equations; electric polarization; electromagnetic fields; integrated optical structures; linear convolutional integral; nonlinear convolution integrals; nonlinear dispersive media; nonlinear modeling; optical carrier; optical soliton propagation; optical soliton scattering; optical switching; quantum effects; second-order ordinary differential equations; time integration; Convolution; Electromagnetic scattering; Maxwell equations; Nonlinear optics; Optical materials; Optical propagation; Optical scattering; Optical solitons; Particle scattering; Raman scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 1992. AP-S. 1992 Digest. Held in Conjuction with: URSI Radio Science Meeting and Nuclear EMP Meeting., IEEE
Conference_Location :
Chicago, IL, USA
Print_ISBN :
0-7803-0730-5
Type :
conf
DOI :
10.1109/APS.1992.221949
Filename :
221949
Link To Document :
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