DocumentCode
801198
Title
Pairing an epsilon-negative slab with a mu-negative slab: resonance, tunneling and transparency
Author
Alú, Andrea ; Engheta, Nader
Author_Institution
Dept. of Electr. & Syst. Eng., Univ. of Pennsylvania, Philadelphia, PA, USA
Volume
51
Issue
10
fYear
2003
Firstpage
2558
Lastpage
2571
Abstract
Here, we analyze the transverse-magnetic (TM) wave interaction with a pair of slabs, one being an epsilon-negative (ENG) layer in which the real part of permittivity is assumed to be negative while its permeability has positive real part, and the other being a mu-negative (MNG) layer that has the real part of its permeability negative but its permittivity has positive real part. Although the wave interaction with each slab by itself has predictable features, we show that the juxtaposition and pairing of such ENG and MNG slabs may, under certain conditions, lead to some unusual features, such as resonance, complete tunneling, zero reflection and transparency. The field distributions inside and outside such paired slabs are analyzed, and the Poynting vector distributions in such structures are studied. Using equivalent transmission-line models, we obtain the conditions for the resonance, complete tunneling and transparency, and we justify and explain the field behavior in these resonant paired structures. Salient features of the tunneling conditions, such as the roles of material parameters, slab thicknesses, dissipation, and angle of incidence are discussed. The analogy and correspondence between the ENG-MNG pair and the pair of a slab of conventional material juxtaposed with a "double-negative" medium is also discussed. Finally, a conceptual idea for a potential application of such a "matched" lossless ENG-MNG pair in "ideal" image displacement and image reconstruction is proposed.
Keywords
magnetic permeability; microwave materials; nanocomposites; permittivity; resonance; transmission line theory; ENG layer; MNG layer; Poynting vector distributions; angle of incidence; dissipation; double-negative material; double-negative medium; epsilon-negative slab; equivalent transmission-line models; field distributions; image displacement; image reconstruction; left-handed material; material parameters; metamaterial; mu-negative slab; negative index material; negative index of refraction; permeability; permittivity; resonance; resonant paired structures; slab thicknesses; transparency; transverse-magnetic wave interaction; tunneling; zero reflection; Cavity resonators; Dielectric materials; Metamaterials; Permeability; Permittivity; Reflection; Resonance; Slabs; Systems engineering and theory; Tunneling;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2003.817553
Filename
1236073
Link To Document