DocumentCode
1334510
Title
Dielectric frequency-selective structures incorporating waveguide gratings
Author
Tibuleac, Sorin ; Magnusson, Robert ; Maldonado, Theresa A. ; Young, Preston P. ; Holzheimer, Timothy R.
Author_Institution
Dept. of Electr. Eng., Texas Univ., Arlington, TX, USA
Volume
48
Issue
4
fYear
2000
fDate
4/1/2000 12:00:00 AM
Firstpage
553
Lastpage
561
Abstract
In this paper, a frequency-selective structure based on guided-mode resonance effects in all-dielectric waveguide gratings is demonstrated theoretically and verified experimentally. Reflection (band-stop) filters with high efficiency, extended low-sideband reflection, and symmetric line shapes are designed by embedding gratings in layered antireflection structures. Reflection filter examples employing common dielectric materials illustrate linewidth control by grating modulation. An additional mechanism for linewidth control is demonstrated with phase-shifted gratings. Double-line reflection filters are obtained in structures containing two gratings with different grating periods. High-efficiency transmission (bandpass) filters are demonstrated using multilayer waveguide gratings in a high-reflectance thin-film configuration with a single grating in the center layer bordered by dielectric mirrors composed of high/low quarter-wave layers. Single-layer and multilayer waveguide gratings operating as reflection and transmission filters, respectively, were built and tested in the 4-20-GHz frequency range. The presence of guided-mode resonance notches and peaks is clearly established by the experimental results, and their spectral location and line shape is found to be in excellent agreement with the theoretical predictions
Keywords
band-pass filters; band-stop filters; dielectric waveguides; diffraction gratings; frequency selective surfaces; periodic structures; waveguide filters; 4 to 20 GHz; all-dielectric waveguide gratings; band-stop filters; bandpass filters; dielectric frequency-selective structures; dielectric mirrors; extended low-sideband reflection; grating modulation; grating periods; guided-mode resonance effects; guided-mode resonance notches; high-reflectance thin-film configuration; layered antireflection structures; linewidth control; phase-shifted gratings; spectral location; symmetric line shapes; waveguide gratings; Band pass filters; Dielectric materials; Dielectric thin films; Frequency; Gratings; Nonhomogeneous media; Reflection; Resonance; Shape; Waveguide theory;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.842027
Filename
842027
Link To Document