We report on the fabrication and characterization of plasmonic structures on flexible substrates (Metaflex) and demonstrate the optical properties of a single layer of Metaflex. The layer exhibits a plasmonic resonance in the visible region around 620 nm. We show experimental and numerical results for both nano-antennas and fishnet geometries. We anticipate the use of Metaflex as a building block for flexible metamaterials in the visible range.Publisher PDFPeer reviewe
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
One of the most straightforward methods to actively control optical functionalities of metamaterials...
We report on the fabrication and characterization of plasmonic structures on flexible substrates (Me...
The authors acknowledge support by EPSRC (EP/I004602/1 and EP/J004200/1).Flexible metamaterials (FMM...
We present our recent results on the design, fabrication and applications of flexible metamaterials ...
Published online 5 March 2015The ability to bend, stretch, and roll metamaterial devices on flexible...
The ability to bend, stretch, and roll metamaterial devices on flexible substrates adds a new dimens...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Flexible metamaterials (FMMs) at optical frequencies can conform to a wide range of target geometrie...
Flexible metamaterials (FMMs) at optical frequencies can conform to a wide range of target geometrie...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
One of the most straightforward methods to actively control optical functionalities of metamaterials...
We report on the fabrication and characterization of plasmonic structures on flexible substrates (Me...
The authors acknowledge support by EPSRC (EP/I004602/1 and EP/J004200/1).Flexible metamaterials (FMM...
We present our recent results on the design, fabrication and applications of flexible metamaterials ...
Published online 5 March 2015The ability to bend, stretch, and roll metamaterial devices on flexible...
The ability to bend, stretch, and roll metamaterial devices on flexible substrates adds a new dimens...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Flexible metamaterials (FMMs) at optical frequencies can conform to a wide range of target geometrie...
Flexible metamaterials (FMMs) at optical frequencies can conform to a wide range of target geometrie...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
The interaction of electromagnetic waves with materials is at the basis of several phenomena influen...
One of the most straightforward methods to actively control optical functionalities of metamaterials...