DocumentCode
848920
Title
Time-Domain Electromagnetic Fields Radiating Along the Horizontal Interface Between Vertically Uniaxial Half-Space Media
Author
Lihh, Won-seok ; Nam, Sangwook
Author_Institution
Global Commun. Technol. (GCT) Res., Inc, Seoul
Volume
55
Issue
5
fYear
2007
fDate
5/1/2007 12:00:00 AM
Firstpage
1305
Lastpage
1317
Abstract
At the horizontal interface between vertically uniaxial half-space media, the propagation of electromagnetic fields is theoretically investigated for an interfacial impulse current source of infinitesimal size. For the electric field, the problem divides into the horizontal source and horizontal receiver (HH), vertical source and vertical receiver (VV), horizontal source and vertical receiver (HV), and vertical source and horizontal receiver (VH) cases. Employing the interface scheme of the Cagniard-style analysis, the solutions of the HH and VV cases are obtained in exact explicit forms. The solutions of the HV and VH cases cannot be expressed in integral-free forms, but the impulse components implicit in the integral solutions can be analytically extracted without the aid of the frequency-domain asymptotic techniques. Investigation is also made of the magnetic field and of the variation of waveforms when the receiver is taken a little off the interface. The uniaxial case is a generalization of the isotropic case, affording richer information of the wave physics
Keywords
electromagnetic fields; electromagnetic wave propagation; magnetic fields; time-domain analysis; Cagniard-style analysis; electromagnetic field propagation; impulse current source; magnetic field; receiver; time-domain analysis; vertically uniaxial half-space media; Acoustic reflection; Data mining; Electromagnetic fields; Electromagnetic propagation; Electromagnetic reflection; Electromagnetic scattering; Magnetic analysis; Permittivity; Tellurium; Time domain analysis; Anisotropic media; dielectric interfaces; electromagnetic transient propagation; time-domain analysis;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2007.895623
Filename
4200910
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