DocumentCode :
8238
Title :
High-Frequency Evaluation of the Field Inside and Outside an Acute-Angled Dielectric Wedge
Author :
Gennarelli, G. ; Frongillo, M. ; Riccio, G.
Author_Institution :
Inst. for Electromagn. Sensing of the Environ., Naples, Italy
Volume :
63
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
374
Lastpage :
378
Abstract :
Explicit closed form solutions are presented for the high-frequency evaluation of the electromagnetic field produced inside and outside an acute-angled lossless penetrable wedge. Both cases of E- and H-polarized incident plane waves are addressed in the study. The problem is tackled and solved in the framework of the uniform theory of diffraction, so that the total field at the observation point is determined by adding the geometrical optics contributions and the diffraction one. This last is obtained by performing a uniform asymptotic evaluation of the radiation integrals arising from a physical optics approximation for the equivalent electric and magnetic surface currents lying on the infinite wedge boundaries. No limitation exists on the refractive index of the structure. The accuracy of the solution is assessed by comparisons with data produced by numerical tools. The physical optics approximation gives rise to inaccuracies when using the solution at grazing incidence and in correspondence of the dielectric interfaces.
Keywords :
approximation theory; electromagnetic fields; electromagnetic wave propagation; geometrical theory of diffraction; physical optics; E-polarized incident plane waves; H-polarized incident plane waves; acute-angled dielectric wedge; acute-angled lossless penetrable wedge; dielectric interfaces; electromagnetic field; equivalent electric surface currents; equivalent magnetic surface currents; explicit closed form solutions; geometrical optics contributions; grazing incidence; high-frequency evaluation; observation point; physical optics approximation; plane wave propagation; radiation integrals; uniform theory-of-diffraction; Antennas; Approximation methods; Dielectrics; Diffraction; Reflection; Time-domain analysis; Dielectric wedge; diffraction; uniform asymptotic solutions;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2364305
Filename :
6933926
Link To Document :
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