DocumentCode :
843862
Title :
Design of High-Performance Millimeter Wave and Sub-Millimeter Wave Quasi-Optical Isolators and Circulators
Author :
Hunter, Robert I. ; Robertson, Duncan A. ; Goy, Philippe ; Smith, Graham M.
Author_Institution :
Sch. of Phys. & Astron., Univ. of St Andrews, Fife
Volume :
55
Issue :
5
fYear :
2007
fDate :
5/1/2007 12:00:00 AM
Firstpage :
890
Lastpage :
898
Abstract :
Faraday rotators using permanently magnetized ferrite materials are used to make quasi-optical isolators and circulators at millimeter wave and sub-millimeter wave frequencies that have far higher performance than their waveguide equivalents. This paper demonstrates state-of-the-art performance for four-port quasi-optical circulators with 60-dB isolation, 0.2-dB insertion loss, and better than 80-dB return loss for devices centered at 94 GHz. A method is presented for the accurate characterization of the complex permeability and permittivity of permanently magnetized ferrites via a series of frequency and polarization dependent transmission and reflection measurements. The dielectric and magnetic parameters for the sample are determined by fitting theoretical curves to the measured data. These fitted parameters are then used in a model for a complete quasi-optical Faraday rotator, including matching layers, allowing the accurate design and fabrication of these devices for any specific operational frequency band in the millimeter wave and sub-millimeter wave regime. Examples are given showing typical results and demonstrating how temperature cycling can significantly improve the temperature stability of these devices, while allowing fine tuning of the center frequency. We also indicate the performance possible at higher frequencies to above 1 THz and outline performance of truly planar isolators where lossy polarizer material is built into the Faraday rotator matching structure
Keywords :
ferrite circulators; ferrite isolators; magnetic permeability; millimetre wave circulators; permittivity; submillimetre wave devices; 0.2 dB; 94 GHz; Faraday rotators; complex permeability; dielectric parameter; lossy polarizer material; magnetic parameters; magnetized ferrite permittivity; millimeter wave quasi-optical isolators; permanently magnetized ferrite materials; planar isolators; quasi-optical circulators; rotator matching; sub-millimeter wave quasi-optical; temperature cycling; Circulators; Dielectric measurements; Ferrites; Frequency; Isolators; Magnetic materials; Millimeter wave technology; Performance loss; Permittivity measurement; Polarization; Faraday rotator; ferrite; millimeter waves; quasi-optics; sub-millimeter waves;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2007.895152
Filename :
4195663
Link To Document :
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