DocumentCode :
46129
Title :
Ultra-Thin Unidirectional Carpet Cloak and Wavefront Reconstruction With Graded Metasurfaces
Author :
Estakhri, Nasim Mohammadi ; Alu, Andrea
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
Volume :
13
fYear :
2014
fDate :
2014
Firstpage :
1775
Lastpage :
1778
Abstract :
Using a suitably designed, ultra-thin graded metasurface, we demonstrate the possibility of hiding an arbitrarily shaped/sized object from an impinging plane wave. The metasurface is tailored to provide an abrupt, inhomogeneous discontinuity to the electromagnetic field that compensates for the unwanted scattering created by the object. The desired field distribution is generated based on the equivalence principle through reconstruction of the electric/magnetic fields at the metasurface location, resembling a flat conducting surface for an external observer. We apply this concept to hide electrically large, cylindrical (two-dimensional, 2-D) and spherical (3-D) domes at optical frequencies and discuss practical cloaking designs for microwave and terahertz regimes. The presented graded metasurface-based cloaks may find interesting applications as low-profile, tunable covers for low observability and noise reduction in wireless commutation systems.
Keywords :
electromagnetic fields; invisibility cloaks; microwave metamaterials; plasmonics; 2D domes; 3-D domes; arbitrarily shaped object; electric fields reconstruction; electromagnetic field; equivalence principle; field distribution; flat conducting surface; impinging plane wave; magnetic fields reconstruction; metasurface-based cloaks; microwave regimes; optical frequencies; practical cloaking designs; spherical domes; terahertz regimes; two-dimensional domes; ultra-thin graded metasurface; Optical reflection; Optical surface waves; Scattering; Surface reconstruction; Surface waves; Three-dimensional displays; Carpet cloaking; gradient metasurfaces; plasmonic resonance; wavefront reconstruction;
fLanguage :
English
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
Publisher :
ieee
ISSN :
1536-1225
Type :
jour
DOI :
10.1109/LAWP.2014.2371894
Filename :
6960844
Link To Document :
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