Title :
Simulation of negative permittivity and negative permeability by means of evanescent waveguide Modes-theory and experiment
Author :
Esteban, Jaime ; Camacho-Peñalosa, Carlos ; Page, Juan E. ; Martín-Guerrero, Teresa M. ; Márquez-Segura, Enrique
Author_Institution :
Dept. de Electromagnetismo y Teoria de Circuitos, Univ. Politecnica de Madrid, Spain
fDate :
4/1/2005 12:00:00 AM
Abstract :
In this paper, the theoretical foundations of the equivalence between waveguide propagation below cutoff and artificial plasmas are carefully analyzed through the derivation of the propagation constants of normal modes in waveguides filled with anisotropic plasmas. The equivalence between waveguide and dielectric plasma proposed by Marquees et al., which is valid for evanescent TE modes, has a dual counterpart for magnetic plasmas and evanescent TM modes. This new equivalence states that a negative magnetic permeability medium can be simulated by means of TM modes below their cutoff frequencies. The need of an anisotropic filling of the waveguide for the equivalence between plasmas and evanescent modes is also highlighted. To exemplify the applicability of this new equivalence, a structure that implements a double-negative medium has been proposed. Full-wave simulations of the proposed structure and measurements from an experimental setup are presented, both of which corroborate the new equivalence´s validity.
Keywords :
magnetic permeability; metamaterials; periodic structures; permittivity; plasma electromagnetic wave propagation; plasma filled waveguides; anisotropic plasma; artificial plasma; backward waves; cutoff frequency; cutoff plasma; dielectric plasma; double-negative medium; electric plasma; evanescent TE mode; evanescent TM mode; evanescent waveguide mode; full wave simulation; magnetic plasma; metamaterials; negative magnetic permeability medium; negative permittivity; periodic structures; plasma filled waveguide; propagation constant; waveguide propagation; Anisotropic magnetoresistance; Dielectrics; Magnetic analysis; Permeability; Permittivity; Plasma measurements; Plasma simulation; Plasma waves; Propagation constant; Waveguide theory; Backward waves; electric plasmas; evanescent modes; magnetic plasmas; metamaterials; negative permeability; negative permittivity; periodic structures;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2005.845194