DocumentCode :
1561873
Title :
Scalar BPM analyses of TE and TM polarized fields in bent waveguides
Author :
Song, Won Jay ; Ahn, Byung Ha
Author_Institution :
Dept. of Mechatronics, KwangJu Inst. of Sci. & Technol., South Korea
fYear :
2002
Firstpage :
370
Lastpage :
375
Abstract :
We have applied the effective index method to reduce the two-dimensional refractive index profile into the one-dimensional refractive index structure and modified the wave equations to obtain paraxial wave equations. TE and TM polarized fields in the curved single-mode planar waveguides are analyzed using the scalar beam-propagation method employing the finite-difference method with a slab structure. The bending loss in bent waveguides is analyzed for optical fields obtained from the beam-propagation method and comparisons are made between the loss for the waveguides with various radii of curvature and refractive index differences. The outward shift of the optical field, which is generated at the connection between a straight and bent waveguide, is obtained from calculations of the location of maximum optical intensity. The transition loss can be reduced by introducing an optimized inward offset at a straight-to-bend junction. The wavelength shift due to birefringence of TE and TM polarized fields in bent waveguides is also calculated.
Keywords :
birefringence; finite difference methods; light propagation; optical losses; optical waveguide theory; refractive index; wave equations; 1D refractive index structure; 2D refractive index profile; TE polarized fields; TM polarized fields; bending loss; bent waveguides; birefringence; curved single-mode planar waveguides; effective index method; finite difference method; maximum optical intensity location; optical fields; outward shift; paraxial wave equations; radius of curvature; refractive index difference; scalar BPM analyses; scalar beam propagation method; slab structure; straight waveguide; straight-to-bend junction; transition loss; wave equations; Optical losses; Optical planar waveguides; Optical polarization; Optical refraction; Optical variables control; Optical waveguides; Partial differential equations; Planar waveguides; Refractive index; Tellurium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Technology: Coding and Computing, 2002. Proceedings. International Conference on
Print_ISBN :
0-7695-1506-1
Type :
conf
DOI :
10.1109/ITCC.2002.1000418
Filename :
1000418
Link To Document :
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