Title :
Novel planar negative refractive index metamaterials
Author :
Goussetis, G. ; Feresidis, A.P. ; Guo, Y. ; Vardaxoglou, J.C.
Author_Institution :
Dept. of Electron. & Electr. Eng., Loughborough Univ., UK
Abstract :
Planar periodic arrays of metallic elements printed on grounded dielectric substrates are presented to exhibit first-order left-handed modes with an equivalent negative refractive index (NRI). The proposed structures dispense with the need for grounding vias and ease the implementation of completely planar (also called uniplanar) NRI metamaterials at higher frequencies. Full wave dispersion curves are presented. A verification of the left-handedness is presented by means of full wave simulation of finite uniplanar arrays using commercial software (HFSS). The cell dimensions are a small fraction of the wavelength (about λ/24) so that the structures can be considered as a homogeneous effective medium. The structures are simple, readily scalable to higher frequencies and compatible with low-cost fabrication techniques.
Keywords :
antenna theory; dispersion (wave); inhomogeneous media; metamaterials; planar antenna arrays; refractive index; HFSS; equivalent NRI; finite uniplanar arrays; first-order left-handed modes; full wave dispersion curves; full wave simulation; grounded dielectric substrates; homogeneous effective medium; left-handedness; low-cost fabrication; metallic elements; negative refractive index metamaterials; planar periodic arrays; uniplanar NRI metamaterials; Computational modeling; Dielectric substrates; Dispersion; Frequency; Metamaterials; Optical propagation; Refractive index; Resonance; Tellurium; Transmission line matrix methods;
Conference_Titel :
Antennas and Propagation Society International Symposium, 2005 IEEE
Print_ISBN :
0-7803-8883-6
DOI :
10.1109/APS.2005.1551722