The phenomenon of plasmon-induced transparency holds immense potential for high sensitivity sensors and optical information processing due to the extreme dispersion and slowing of light within a narrow spectral window. Unfortunately plasmonic metamaterials demonstrating this effect has been restricted to infrared and greater wavelengths due to requisite precision in structure fabrication. Here we report a novel metamaterial synthesized by bottom-up self-assembly of gold nanorods. The small dimensions (≤50/20 nm, length/diameter), atomically smooth surfaces, and nanometer resolution enable the first demonstration of plasmon-induced transparency at visible wavelengths. The slow-down factors within the reduced symmetry heterodimer cluster are ...
Vertically aligned gold nanorod arrays have attracted much attention for their fascinating optical p...
Metallic nanoparticles are unique materials for optical, electronic, catalytic, and sensing applicat...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
We propose and describe plasmonic nanomaterials with unique optical properties. These nanostructured...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
We propose and describe plasmonic nanomaterials with unique optical properties. These nanostructured...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Ordered assemblies of individual metal nanoparticle building blocks have been important platforms in...
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce co...
We demonstrate that optical transparency can be realized with plasmonic metamaterials using unit cel...
We investigate functional capabilities of large arrays of gold and silver nanorods as elements of pl...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
We experimentally and numerically demonstrate a planar metamaterial consisting of two asymmetrically...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Controlling coherent electromagnetic interactions in molecular systems is a problem of both fundamen...
Vertically aligned gold nanorod arrays have attracted much attention for their fascinating optical p...
Metallic nanoparticles are unique materials for optical, electronic, catalytic, and sensing applicat...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
We propose and describe plasmonic nanomaterials with unique optical properties. These nanostructured...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
We propose and describe plasmonic nanomaterials with unique optical properties. These nanostructured...
Metallic nanostructures that sustain plasmonic resonances are indispensable ingredients for many fun...
Ordered assemblies of individual metal nanoparticle building blocks have been important platforms in...
Noble metal nanoparticles are capable of confining resonant photons in such a manner as to induce co...
We demonstrate that optical transparency can be realized with plasmonic metamaterials using unit cel...
We investigate functional capabilities of large arrays of gold and silver nanorods as elements of pl...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
We experimentally and numerically demonstrate a planar metamaterial consisting of two asymmetrically...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Controlling coherent electromagnetic interactions in molecular systems is a problem of both fundamen...
Vertically aligned gold nanorod arrays have attracted much attention for their fascinating optical p...
Metallic nanoparticles are unique materials for optical, electronic, catalytic, and sensing applicat...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...