Graphene exhibits unique material properties, and in electromagnetic wave technology it raises the prospect of devices miniaturized down to the atomic length scale. Here we study split-ring resonator metamaterials made from graphene and we compare them to gold-based metamaterials. We find that graphene\u27s huge reactive response derived from its large kinetic inductance allows for deeply subwavelength resonances, although its resonance strength is reduced due to higher dissipative loss damping and smaller dipole coupling. Nevertheless, tightly stacked graphene rings may provide for negative permeability and the electric dipole resonance of graphene meta-atoms turns out to be surprisingly strong. Based on these findings, we present a terahe...
1 pag, 1 fig. -- 2013 Conference On Lasers and Electro-optics Europe and International Quantum Elect...
The interaction of large-area single-layer CVD-graphene with a metasurface constituted by THz split-...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Graphene exhibits unique material properties, and in electromagnetic wave technology it raises the p...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
4 pags, 3 figs, 1 tabsGraphene has emerged as a promising platform for THz plasmonics, allowing high...
<p> A planar terahertz metamaterial consisting of square split ring resonators is proposed, and the...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
Graphene has emerged as a novel plasmonic material with advantageous properties for metamaterial des...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
1 pag, 1 fig. -- 2013 Conference On Lasers and Electro-optics Europe and International Quantum Elect...
The interaction of large-area single-layer CVD-graphene with a metasurface constituted by THz split-...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...
Graphene exhibits unique material properties, and in electromagnetic wave technology it raises the p...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
Various terahertz metamaterial devices and concepts involving graphene have been introduced in the l...
4 pags, 3 figs, 1 tabsGraphene has emerged as a promising platform for THz plasmonics, allowing high...
<p> A planar terahertz metamaterial consisting of square split ring resonators is proposed, and the...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
Graphene has emerged as a novel plasmonic material with advantageous properties for metamaterial des...
The integration of quantum cascade lasers with devices capable of efficiently manipulating terahertz...
1 pag, 1 fig. -- 2013 Conference On Lasers and Electro-optics Europe and International Quantum Elect...
The interaction of large-area single-layer CVD-graphene with a metasurface constituted by THz split-...
We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonator...