DocumentCode :
1856908
Title :
Design of waveguide filters using a PBG disk-type material
Author :
Silveirinha, M.G.M.V. ; Fernandes, Carlos A.
Author_Institution :
Instituto de Telecomunicacoes, Inst. Superior Tecnico, Lisboa, Portugal
Volume :
4
fYear :
2003
fDate :
22-27 June 2003
Firstpage :
875
Abstract :
In this paper, we discuss how to obtain the dispersion characteristic of a periodically loaded waveguide from the band structure of an equivalent unbounded artificial periodic material. We examine the filtering properties of a waveguide that is periodically loaded with metallic disks. Unlike the traditional design (R.E. Collin, Field Theory of Guided Waves, 2nd Ed., IEEE Press, 1991), which is based on lumped-element analysis and optimization (C. Kyriazidou et al, IEEE Trans. on MTT, vol. 49, pp. 297, 2001), our analysis is full-wave. This allows us to investigate the filtering properties of structures in which the distance between the disk-planes is small, and to take into account the granularity of the transversal lattice. We discuss how the number of elements in the cross-section of the waveguide and the permittivity of the host material, influence the band-gap width and position. We study in addition the effect of transversal off-setting adjacent disk-planes. The theoretical results are validated against experimental data.
Keywords :
design engineering; microwave photonics; permittivity; photonic band gap; waveguide filters; PBG disk-type material; band structure; band-gap position; band-gap width; disk-planes distance; dispersion characteristic; equivalent unbounded artificial periodic material; filtering properties; full-wave analysis; host material permittivity; lumped-element analysis; metallic disks; optimization; periodic structures; periodically loaded waveguide; transversal lattice granularity; transversal off-setting; waveguide cross-section; waveguide filter design; waveguide filtering properties; Crystalline materials; Dielectric materials; Electromagnetic waveguides; Filtering; Filters; Geometry; Loaded waveguides; Periodic structures; Photonic band gap; Planar waveguides;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 2003. IEEE
Conference_Location :
Columbus, OH, USA
Print_ISBN :
0-7803-7846-6
Type :
conf
DOI :
10.1109/APS.2003.1220411
Filename :
1220411
Link To Document :
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