Title :
Study of polarization-dependent coupling in optical waveguide directional couplers by the effective-index method with built-in perturbation correction
Author :
Kwan, Chung Ho ; Chiang, Kin Seng
Author_Institution :
Dept. of Electron. Eng., City Univ. of Hong Kong, Kowloon, China
fDate :
6/1/2002 12:00:00 AM
Abstract :
Polarization dependence is a major factor of consideration in the design of optical waveguide devices for application in optical fiber transmission systems. In this paper, we apply the recently proposed effective-index method with built-in perturbation correction to the study of the polarization dependence in the coupling coefficient of a directional coupler that consists of two parallel rectangular-core waveguides. Numerical results are found to agree with those calculated by the vector version of the Marcatili method with perturbation correction. With numerical illustrations, we show that the polarization dependence in the splitting ratio of a directional coupler can be eliminated by a proper choice of the physical parameters of the coupler. Our results provide useful guidelines for the design of polarization-insensitive integrated-optic directional couplers
Keywords :
integrated optics; light polarisation; optical communication equipment; optical design techniques; optical directional couplers; optical waveguide theory; perturbation theory; wavelength division multiplexing; Marcatili method; WDM; built-in perturbation correction; coupling coefficient; directional coupler; effective-index method; optical waveguide device design; optical waveguide directional couplers; parallel rectangular-core waveguides; perturbation correction; physical parameters; polarization dependence; polarization-dependent coupling; polarization-insensitive integrated-optic directional couplers design; vector version; wavelength-division multiplexers; Directional couplers; Guidelines; Optical coupling; Optical design; Optical devices; Optical fiber polarization; Optical fibers; Optical polarization; Optical waveguides; Rectangular waveguides;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2002.1018813