DocumentCode :
1619995
Title :
Periodic surface of materials with single and double negative parameters: absorption resonances
Author :
Melezchik, Petr N. ; Poyedinchuk, Anatoliy Ye ; Tuchkin, Yuriy A. ; Yashina, Nataliya P.
Author_Institution :
Inst. of Radiophys. & Electron., Nat. Acad. of Sci. of Ukraine, Kharkov, Ukraine
Volume :
1
fYear :
2004
Firstpage :
311
Abstract :
Here, we present the study of electromagnetic waves interaction with material with single and double negative parameters having periodic surface, based on rigorous solution to corresponding boundary value problem. It is well known and proved by numerous cases that the most profound and efficient study of electromagnetic waves interaction with objects and especially the objects possessing resonant properties, can be performed by the interactive and complementary study of diffraction and spectral problem solution. Here, we use the solution to diffraction problem for periodic surface obtained by C formalism associated with regularization that is described. For the spectral problem solution the analytical continuation (within the frames of the theory of analytic functions) of the solutions to diffraction problem for the boundary between two dielectric media into the domain of complex valued frequencies is considered. The reason and benefits of such continuation consist in the fact that singularities (poles, branching points and etc.) of the diffraction problem solution, appearing after such continuation into the domain of complex frequencies, define and predetermine completely the diffraction field features, obtained in the physical (at real frequencies) domain of parameters.
Keywords :
anisotropic media; boundary-value problems; dielectric materials; surface electromagnetic waves; absorption resonances; analytic functions theory; analytical continuation; boundary value problem; complex frequencies; dielectric media; double negative parameters; electromagnetic waves interaction; periodic surface; resonant properties; single negative parameters; spectral problem solution; Boundary value problems; Dielectric materials; Electromagnetic diffraction; Electromagnetic scattering; Frequency; H infinity control; Optical polarization; Resonance; Surface waves; Transportation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves, 2004. MSMW 04. The Fifth International Kharkov Symposium on
Print_ISBN :
0-7803-8411-3
Type :
conf
DOI :
10.1109/MSMW.2004.1345867
Filename :
1345867
Link To Document :
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