DocumentCode
1288607
Title
Filter-response line shapes of resonant waveguide gratings
Author
Day, Robert W. ; Wang, Shu-Shaw ; Magnusson, Robert
Author_Institution
Dept. of Electr. Eng., Texas Univ., Arlington, TX, USA
Volume
14
Issue
8
fYear
1996
fDate
8/1/1996 12:00:00 AM
Firstpage
1815
Lastpage
1824
Abstract
The line shape symmetry properties of planar dielectric resonant waveguide-grating filters are theoretically characterized for both TE and TM polarization. Classical antireflection theory is applied to the design of guided-mode resonance filters and it is shown that the symmetry of the line-shape response is determined by the location of the resonance relative to the minimum of the antireflection band. The conditions that allow a single dielectric layer to simultaneously function as both a waveguide grating and as an antireflection thin film are presented. Single-layer antireflection waveguide gratings are shown to yield highly symmetrical filter-response line shapes with suppressed sideband reflectivity and 100% reflectivity at the resonance wavelength. The parametric locations of the symmetrical line-shape responses are predicted approximately by solving the resonance-location equation with the grating thickness set equal to a multiple of a half-resonance-wavelength. Graphical representations of these solutions are provided. Symmetric waveguide-grating filters are shown to yield symmetrical line shapes with near-zero sideband reflectivity, whereas asymmetric filters produce symmetrical line shapes but suffer from increased sideband reflectance that increases as the asymmetry of the filter grows. Numerous calculated examples are presented to demonstrate that ideal reflection filters can be designed by combining thin-film antireflection effects and resonance effects in a single dielectric layer
Keywords
antireflection coatings; diffraction gratings; light polarisation; optical films; optical planar waveguides; optical waveguide components; optical waveguide filters; reflectivity; symmetry; TE polarization; TM polarization; antireflection band; antireflection theory; antireflection thin film; filter-response line shapes; guided-mode resonance filter design; highly symmetrical filter-response line shapes; line shape symmetry properties; near-zero sideband reflectivity; planar dielectric resonant waveguide-grating filters; resonance wavelength; resonance-location equation; resonant waveguide gratings; single dielectric layer; single-layer antireflection waveguide gratings; suppressed sideband reflectivity; waveguide grating; Dielectric thin films; Filters; Gratings; Planar waveguides; Polarization; Reflectivity; Resonance; Shape; Tellurium; Waveguide theory;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.532018
Filename
532018
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