DocumentCode :
1905969
Title :
Electric and magnetic field dyadic Green´s functions and depolarizing dyad for a magnetic current immersed in a uniaxial dielectric-filled parallel plate waveguide
Author :
Havrilla, Michael
Author_Institution :
Air Force Inst. of Technol., Wright-Paterson AFB, OH, USA
fYear :
2011
fDate :
13-20 Aug. 2011
Firstpage :
1
Lastpage :
4
Abstract :
The dyadic Green´s functions and depolarizing dyad for the electric and magnetic fields due to a magnetic current immersed in a uniaxial dielectric-filled parallel plate waveguide with perfect electric conducting (PEC) boundaries are developed here. The Green´s functions are derived directly from Maxwell´s equations using the superposition of a particular (i.e., principal) and complementary (i.e., reflected) solution based upon a spectral domain analysis. It is shown that the magnetic current maintains both ordinary and extraordinary waves which are TEz and TMz, respectively, and that these field sets do not couple at the parallel-plate PEC boundaries. The physical meaning of the various terms in the Green´s functions is provided as well as a simple formulation for computing the magnetic field Green´s function from the electric field Green´s function. A simple approach for computing the depolarizing dyad term due to the source point singularity in the principal magnetic field representation is presented and consequently leads to a Green´s function expression that is valid both externally and internally to the source region. Applications which motivate the need for these Green´s functions, such as the measurement of hexagonal honeycomb core composites and uniaxial crystals, are also discussed.
Keywords :
Green´s function methods; dielectric waveguides; honeycomb structures; magnetic fields; parallel plate waveguides; spectral analysis; depolarizing dyad; dyadic Green functions; electric field Green function; hexagonal honeycomb core composites; magnetic current; perfect electric conducting boundaries; principal magnetic field representation; spectral domain analysis; uniaxial crystals; uniaxial dielectric-filled parallel plate waveguide; Dielectrics; Electric fields; Electromagnetic waveguides; Green´s function methods; Magnetic domains; Magnetic fields; Mercury (metals);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
General Assembly and Scientific Symposium, 2011 XXXth URSI
Conference_Location :
Istanbul
Print_ISBN :
978-1-4244-5117-3
Type :
conf
DOI :
10.1109/URSIGASS.2011.6050349
Filename :
6050349
Link To Document :
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