DocumentCode
1075930
Title
Modes of a symmetric slab optical waveguide in birefringent media - Part II: Slab with coplanar optical axis
Author
Marcuse, Dietrich ; Kaminow, Ivan P.
Author_Institution
Bell Laboratories, Holmdel, NJ, USA
Volume
15
Issue
2
fYear
1979
fDate
2/1/1979 12:00:00 AM
Firstpage
92
Lastpage
101
Abstract
We study the modes of a symmetric thin-film slab waveguide composed of birefringent crystalline material in the film and in the equivalent substrate and superstrate. In addition we assume that the optical axes of the uniaxial materials of film and substrate are parallel to each other and also parallel (coplanar) to the plane of the film. This simple anisotropic waveguide has interesting properties. It supports only hybrid modes but in the limit of propagation along the optical axis and at right angles to it the modes become almost of the TE and TM type. Moreover, some of the modes become leaky waves as they propagate at increasingly larger angles relative to the optical axis of the dielectric material. For guides made of materials whose ordinary refractive index no is larger than the extraordinary index ne , the extraordinary wave modes, which approximate TE modes, become leaky; and for
, the ordinary wave modes, which approximate TM modes, become leaky. The leakage losses are large near a "critical angle," where leakage begins to appear but may be insignificant at larger angles, measured between the optical axis and the direction of propagation.
, the ordinary wave modes, which approximate TM modes, become leaky. The leakage losses are large near a "critical angle," where leakage begins to appear but may be insignificant at larger angles, measured between the optical axis and the direction of propagation.Keywords
Optical planar waveguides; Planar optical waveguide; Birefringence; Coplanar waveguides; Crystalline materials; Optical films; Optical propagation; Optical refraction; Optical variables control; Optical waveguide components; Optical waveguides; Slabs;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1979.1069973
Filename
1069973
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