Title :
Design and Analysis of 1-D Uniform and Chirped Electromagnetic Bandgap Structures in Substrate-Integrated Waveguides
Author :
Schwartz, Joshua D. ; Abhari, Ramesh ; Plant, David V. ; Azaña, José
Author_Institution :
Energie, Mater. et Telecommun., Inst. Nat. de la Rech. Sci., Montreal, QC, Canada
fDate :
7/1/2010 12:00:00 AM
Abstract :
We demonstrate the creation of an electromagnetic bandgap (stopband) within the passband of the fundamental mode of a substrate-integrated waveguide. The bandgap is achieved by periodically modulating the waveguide width using the metallic plated vias that form the effective waveguide sidewall. We describe the design of such a structure, noting that, compared with previously demonstrated 1-D transmission-line electromagnetic bandgap structures, the resonant bandgap frequency is more significantly affected by the amplitude (depth) of the modulation of the waveguide width. We explain this result using classical circuit theory and describe a model-based approach to predicting device behavior. We present measured results for several designed structures in the Ka-band using smooth and square-like modulations of the waveguide width. We demonstrate both uniform and linearly chirped (dispersive) implementations; the latter structures yield broadband linear group delays in the reflected band.
Keywords :
photonic band gap; planar waveguides; substrate integrated waveguides; 1D transmission-line electromagnetic bandgap structures; 1D uniform analysis; Ka-band; broadband linear group delays; chirped electromagnetic bandgap structures; classical circuit theory; device behavior prediction; effective waveguide sidewall; metallic plate; model-based approach; planar waveguides; resonant bandgap frequency; smooth like modulations; square-like modulations; substrate-integrated waveguides; waveguide width modulation; Dispersion; millimeter-wave waveguides; periodic structures; photonic bandgap; planar waveguides; waveguide filters;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2010.2050025