DocumentCode :
1085431
Title :
Leaky mode propagation in planar multilayer birefringent waveguides: longitudinal dielectric tensor configuration
Author :
D´Orazio, Antonella ; De Sario, Marco ; Petruzzelli, Vincenzo ; Prudenzano, Francesco
Author_Institution :
Dipartimento di Elettrotecnica ed Elettronica, Politecnico di Bari, Italy
Volume :
12
Issue :
3
fYear :
1994
fDate :
3/1/1994 12:00:00 AM
Firstpage :
453
Lastpage :
462
Abstract :
In this paper we examine leaky mode propagation in a general five-layered c-rotated optical structure with longitudinal dielectric tenser configuration that can be considered a useful pattern for many actual waveguides. The dependence of the leaky mode propagation on the longitudinal angle φ (between the optical c-axis and laboratory axis) is shown and the dispersion characteristics for different types and thicknesses of buffer and metal layer are reported. The guided mode losses at the wavelength λ=0.633 μm assume the lowest values (about 1 dB/cm) for an Ag layer and for φ=0°. Furthermore, we investigate the variation in the propagation characteristics of the leaky and guided modes with respect to the source wavelength. We obtain the transition wavelength from (G) guided modes to lowest order (L1 ) leaky mode, having the ordinary component that leaks into the substrate; the transition wavelength to a higher order (L2) leaky mode, which has both ordinary and extraordinary leaky components and the leaky cutoff wavelength. As an example, for φ=10° and an Ag metal layer, the first-order G11 mode transforms from guided to leaky L111 at λgl≃0.9 μm. The losses exhibit a change of several dB near the wavelength transition from guided to leaky mode (e.g. The attenuation constant of the G11 mode changes from 0.26×102 dB/cm at λ=0.633 μm to 0.18×10 5 dB/cm at λ=0.95 μm where its ordinary component is a leaky one). A similar change is found near the transition wavelength from a lowest-order mode to the highest-order leaky mode
Keywords :
birefringence; integrated optics; optical films; optical losses; optical waveguide theory; optical waveguides; tensors; 0.633 mum; 0.9 mum; Ag layer; Ag metal layer; buffer; dispersion characteristics; first-order G11 mode; five-layered c-rotated optical structure; guided mode losses; guided modes; laboratory axis; leaky cutoff wavelength; leaky mode propagation; leaky modes; longitudinal angle; longitudinal dielectric tenser configuration; longitudinal dielectric tensor configuration; metal layer; optical c-axis; optical waveguides; planar multilayer birefringent waveguides; propagation characteristics; source wavelength; transition wavelength; Attenuation; Birefringence; Dielectrics; Laboratories; Nonhomogeneous media; Optical attenuators; Optical buffering; Optical losses; Optical propagation; Optical waveguides;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.285328
Filename :
285328
Link To Document :
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