Title :
A full-vectorial pseudospectral modal analysis of dielectric optical waveguides with stepped refractive index profiles
Author :
Huang, Chia-Chien ; Huang, Chia-Chih ; Yang, Jaw-Yen
Author_Institution :
Dept. of Electron. Eng., Tung Nan Inst. of Technol., Taichung, Taiwan
Abstract :
A new full-vectorial mode solver based on the pseudospectral method for computing dielectric optical waveguides is proposed. The subdomains with homogeneous refractive indexes are connected with imposing the continuities of Ez and Hz at the dielectric interfaces, and thus the coupled equations in terms of the transverse magnetic field components Hx and Hy are formulated. The optical fields are expanded by a suitable set of orthogonal basis functions, such as Laguerre-Gauss (LG) functions or Chebyshev polynomials. Furthermore, the a priori determination of the scaling factor in LG functions is introduced by means of the effective index method in order to considerably reduce the extra computational time by lengthy trial and errors used by others. Results calculated by the proposed full-vectorial scheme for dispersion characteristics of rectangular channel and rib waveguides having piecewise uniform refractive indexes, even though a coarse mesh used, show good agreement with previously published data based on other rigorous numerical methods.
Keywords :
Chebyshev approximation; coupled mode analysis; integrated optics; optical waveguide theory; refractive index; rib waveguides; Chebyshev polynomials; Laguerre-Gauss functions; channel waveguide; coupled equations; dielectric optical waveguides; full-vectorial pseudospectral modal analysis; orthogonal basis functions; rib waveguide; stepped refractive index profiles; Couplings; Dielectrics; Equations; Magnetic fields; Modal analysis; Optical computing; Optical refraction; Optical variables control; Optical waveguides; Refractive index; Dielectric optical waveguide; full-vectorial mode solver; multidomain; orthogonal basis function; pseudospectral method; rectangular channel waveguide; rib waveguide;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2005.846540