DocumentCode :
1155695
Title :
High-impedance transmission line with hybrid surface waves propagating near gyromagnetic resonance on a ferrite cylinder
Author :
Hagmann, Mark J.
Author_Institution :
Deseret Electron. Res. Corp., North Salt Lake, UT, USA
Volume :
40
Issue :
6
fYear :
2004
Firstpage :
3527
Lastpage :
3532
Abstract :
This work presents a derivation of expressions for the electromagnetic fields propagating at a frequency near gyromagnetic resonance on a ferrite cylinder magnetized by an applied axial dc magnetic field. This system allows propagation by hybrid surface waves only, where the axial electric and magnetic fields are both nonzero. The expressions apply to the transverse impedance, the ratios of the electric field to the magnetic field for the radial and azimuthal components of these waves, and the power transfer impedance, which relates the axial current to the power transferred by these waves. Numerical values, based on the properties of strontium hexaferrite measured at 120 GHz, show that the power transfer impedance may exceed 1 MΩ. The data suggest that short lengths of such a high-impedance transmission line could be used to increase the output from millimeter-wave mixers.
Keywords :
electric impedance; electromagnetic fields; ferrites; magnetic resonance; millimetre waves; strontium compounds; surface electromagnetic waves; transmission lines; 120 GHz; axial DC magnetic field; axial electric field; azimuthal components; electromagnetic field propagation; ferrite cylinder; gyromagnetic resonance; high-impedance transmission line; hybrid surface wave propagation; millimeter waves; power transfer impedance; strontium hexaferrite; transverse impedance; Electromagnetic propagation; Ferrites; Gyromagnetism; Magnetic field measurement; Magnetic fields; Magnetic resonance; Power transmission lines; Surface impedance; Surface waves; Transmission lines; 65; Ferrite; gyromagnetic resonance; millimeter waves; surface wave; terahertz;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.836293
Filename :
1353460
Link To Document :
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