DocumentCode :
738968
Title :
Dispersion Analysis of Complex Periodic Structures by Full-Wave Solution of Even-Odd-Mode Excitation Problems for Single Unit Cells
Author :
Eberspacher, M.A. ; Eibert, Thomas F.
Author_Institution :
Lehrstuhl fur Hochfrequenztech., Tech. Univ. Munchen, München, Germany
Volume :
61
Issue :
12
fYear :
2013
Firstpage :
6075
Lastpage :
6083
Abstract :
The Bloch modes of complex periodic structures are computed by superimposing results obtained from even-odd-mode full-wave driven simulations of individual unit cells. In order to emulate the periodic boundary conditions for the Bloch modes, one full-wave simulation is performed with magnetic and one with electric boundary conditions yielding the even- and odd-mode results, respectively. Therefore, the employed full-wave solver does not even need to support periodic boundary conditions. Since the non-periodic boundary conditions can be arbitrary, even open and radiating problems can be analyzed. The excitation of the structures is performed by discrete ports, which are located appropriately in order to excite the desired mode, typically the fundamental mode of the background structure. The found even- and odd-mode impedances deliver directly the complex propagation constant and the Bloch impedance of the periodic structure without any iterative search and under consideration of all electromagnetic interaction effects. This is in contrast to alternative solution methods, which require to solve computationally intensive eigenproblems or many excitation problems. Moreover, this approach allows to determine the field data corresponding to the Bloch mode, where arbitrary real and complex modes can be handled. Numerical results for different classes of problems including 1D and 2D microstrip structures as well as hollow waveguide based unit cells are presented.
Keywords :
dispersion (wave); eigenvalues and eigenfunctions; electric impedance; electromagnetic wave propagation; microwave metamaterials; periodic structures; waveguides; 1D microstrip structure; 2D microstrip structure; Bloch impedance; Bloch mode; complex periodic structure dispersion analysis; complex propagation constant; composite right-left handed; discrete port; eigenproblem; electric boundary condition; electromagnetic interaction; even mode excitation problem; even mode impedance; full wave simulation; hollow waveguide based unit cell; magnetic boundary condition; nonperiodic boundary condition; odd mode excitation problem; odd mode impedance; unit cell; Boundary conditions; Impedance; Inductance; Magnetic resonance imaging; Periodic structures; Ports (Computers); Propagation constant; Composite right/left-handed unit cells; even-odd mode analysis; metamaterials; periodic structures;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2283279
Filename :
6607155
Link To Document :
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