DocumentCode :
769157
Title :
Manufacturing Tolerance Analysis, Fabrication, and Characterization of 3-D Submillimeter-Wave Electromagnetic-Bandgap Crystals
Author :
Martínez, Beatriz ; Ederra, Iñigo ; Gonzalo, Ramón ; Alderman, Byron ; Azcona, Luis ; Huggard, Peter G. ; De Hon, Bas ; Hussain, Ali ; Andrews, Steve R. ; Marchand, Laurent ; De Maagt, Peter
Author_Institution :
Electr. & Electron. Eng. Dept., Univ. Publica de Navarra, Pamplona
Volume :
55
Issue :
4
fYear :
2007
fDate :
4/1/2007 12:00:00 AM
Firstpage :
672
Lastpage :
681
Abstract :
The sensitivity of the characteristic band edge frequencies of three different 500-GHz electromagnetic-bandgap crystals to systematic variations in unit cell dimensions has been analyzed. The structures studied were square bar woodpiles made with dielectric having epsiv rap12 and epsivr=37.5 and two wide bandgap epsivr=37.5 crystals designs proposed by Fan and Johnson and Joannopoulos. These epsivr values correspond to high-resistivity silicon and a zirconium-tin-titanate ceramic, respectively. For the woodpiles, the fractional frequency bandgap varied very little for dimensional deviations of up to plusmn5% from the optimum. The bandgaps of the Fan and Johnson and Joannopoulos structures were affected to a greater extent by dimensional variations, particular sensitivity being exhibited to the air-hole radius. For all crystals, the effect of increasing the amount of dielectric in the unit cell was to shift the bandgap edges to lower frequencies. Both silicon and ceramic woodpiles, along with a ceramic Fan structure, were fabricated and dimensionally characterized. Mechanical processing with a semiconductor dicing saw was used to form the woodpiles, while the Fan structure required both dicing and UV laser drilling of circular thru-holes. Good agreement with predicted normal incidence transmissions were found on the low-frequency side of the bandgap in all cases, but transmission values above the upper band edge were lower than expected in the ceramic structures
Keywords :
dielectric materials; energy gap; microwave materials; photonic crystals; submillimetre wave devices; 3D submillimeter-wave electromagnetic-bandgap crystals; 500 GHz; UV laser drilling; air-hole radius; band edge frequencies; ceramic fan structure; ceramic woodpiles; electromagnetic-bandgap materials; fractional frequency bandgap; high-resistivity silicon; manufacturing tolerance analysis; semiconductor dicing saw; silicon woodpiles; square bar woodpiles; sub-millimeter-wave devices; zirconium-tin-titanate ceramic; Ceramics; Crystals; Dielectrics; Electromagnetic analysis; Fabrication; Frequency; Manufacturing; Photonic band gap; Silicon; Tolerance analysis; Electromagnetic-bandgap (EBG) materials; fabrication technologies; sub-millimeter-wave devices;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2007.892803
Filename :
4148111
Link To Document :
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