Active plasmonics has been an interesting and important topic recently. Here we demonstrate the all-optical, polarization-insensitive tunable manipulation of a hybrid system that integrates a silver nanorod array with photoresponsive liquid crystals. The large-area plasmonic nanorod arrays are fabricated by laser interference lithography and ion milling. By covering a layer of photoresponsive liquid crystals, tunable control of plasmon resonance is achieved under an external light pump. The silver nanorod array also enables the homeotropic alignment of the liquid crystals, which makes the all-optical tuning behavior polarization-insensitive. With its advantages of cost-effective fabrication, easy integration, all-optical control, and polari...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
We report tunable coupling between exciton and surface plasmon in a liquid crystal device consisting...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
Large shifts in the plasmonic resonances of a thin film of gold nanorods (GNRs) are induced through ...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
In this work, we demonstrate the bulk self-alignment of gold nanorods (GNRs) dispersed in lyotropic ...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
Metamaterials in photonics represent a large class of nano-structured artificial media with optical ...
The current generation of display technology has already provided the public with displays that exhi...
Inspired by the anisotropic molecular shape and tunable alignment of liquid crystals (LCs), investig...
Structural colour arising from nanostructured metallic surfaces offers many benefits compared to con...
Structural colour arising from nanostructured metallic surfaces offers many benefits compared to con...
Plasmonic pixels have been shown to offer numerous advantages over pigment-based color filters used ...
Photoalignment technology provides high alignment quality with an exceptional control over the local...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
We report tunable coupling between exciton and surface plasmon in a liquid crystal device consisting...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
Large shifts in the plasmonic resonances of a thin film of gold nanorods (GNRs) are induced through ...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
In this work, we demonstrate the bulk self-alignment of gold nanorods (GNRs) dispersed in lyotropic ...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
Metamaterials in photonics represent a large class of nano-structured artificial media with optical ...
The current generation of display technology has already provided the public with displays that exhi...
Inspired by the anisotropic molecular shape and tunable alignment of liquid crystals (LCs), investig...
Structural colour arising from nanostructured metallic surfaces offers many benefits compared to con...
Structural colour arising from nanostructured metallic surfaces offers many benefits compared to con...
Plasmonic pixels have been shown to offer numerous advantages over pigment-based color filters used ...
Photoalignment technology provides high alignment quality with an exceptional control over the local...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...
We report tunable coupling between exciton and surface plasmon in a liquid crystal device consisting...
We report on the design, fabrication, and analysis of a tunable device combining nanoparticle arrays...