Cataloged from PDF version of article.We demonstrate a polarization independent negative-index metamaterial (NIM) at microwave frequencies. Transmission measurements and simulations predict a left-handed transmission band with negative permittivity and negative permeability. A negative-index is verified by using the retrieval procedure. Effective parameters of single-layer and twolayer NIMs are shown to be different. Negative phase advance is verified within the negative-index regime by measuring the phase shift between different sized negative-index metamaterials. Backward wave propagation is observed in the numerical simulations at frequencies where the phase advance is negative. ©2008 Optical Society of Americ
Materials that exhibit negative index (NI) of refraction have several potential applications in micr...
Negative index materials (NIM) are artificial structures in which the refractive index for light has...
Superlenses based on metamaterials are promising candidates for achieving subwavelength resolution. ...
We demonstrate a polarization independent negative-index metamaterial (NIM) at microwave frequencies...
The Metamaterials are artificial composite structures that exhibit a homogeneous effective permittiv...
We report the transmission characteristics of split-ring resonator and left-handed metamaterials (LH...
We demonstrate experimentally the double-negative (ε < 0, μ < 0) transmission band of a one-dimensio...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
We present simulation results of a design for negative index materials that uses magnetic resonators...
We report an experimental and numerical analysis of a planar metamaterial designed for normal-to-pla...
This work is concerned with the experimental demonstration of a dual-band negative index metamateria...
Composite structures based on metal open rings and thin wires are well established, for obtaining ef...
Metamaterials are artificially engineered materials, which exhibit properties that do not exist in n...
In 1951, G.D. Malyuzhinets pointed out that a negative phase velocity c of an electromagnetic wave c...
We review experimental studies on left-handed metamaterials operating at microwave frequencies. Left...
Materials that exhibit negative index (NI) of refraction have several potential applications in micr...
Negative index materials (NIM) are artificial structures in which the refractive index for light has...
Superlenses based on metamaterials are promising candidates for achieving subwavelength resolution. ...
We demonstrate a polarization independent negative-index metamaterial (NIM) at microwave frequencies...
The Metamaterials are artificial composite structures that exhibit a homogeneous effective permittiv...
We report the transmission characteristics of split-ring resonator and left-handed metamaterials (LH...
We demonstrate experimentally the double-negative (ε < 0, μ < 0) transmission band of a one-dimensio...
Refractive index is determined by permittivity ϵ and permeability μ, where permittivity å is t...
We present simulation results of a design for negative index materials that uses magnetic resonators...
We report an experimental and numerical analysis of a planar metamaterial designed for normal-to-pla...
This work is concerned with the experimental demonstration of a dual-band negative index metamateria...
Composite structures based on metal open rings and thin wires are well established, for obtaining ef...
Metamaterials are artificially engineered materials, which exhibit properties that do not exist in n...
In 1951, G.D. Malyuzhinets pointed out that a negative phase velocity c of an electromagnetic wave c...
We review experimental studies on left-handed metamaterials operating at microwave frequencies. Left...
Materials that exhibit negative index (NI) of refraction have several potential applications in micr...
Negative index materials (NIM) are artificial structures in which the refractive index for light has...
Superlenses based on metamaterials are promising candidates for achieving subwavelength resolution. ...