Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved to be an excellent candidate for dynamic and efficient light control. However, due to the consistent optical response of metals, there are some limitations aiming to directly engineer electromagnetic resonances of widespread metal-based composites. The former is accomplished by altering the features or structures of substrates around the resonant unit cells only. In this regard, the adjusting of metallic composites has considerably weak performance. Herein, we make a step forward by providing deep insight into a direct tuning approach for semiconductor-based composites. The resonance behavior of their properties can be dramatically affected ...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Metamaterials offer a huge range of enhanced and novel functionalities that natural materials cannot...
Dynamic control over metamaterial optical properties is the basis for the use of metamaterials as ac...
Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved...
Metal-semiconductor nanostructures represent an important new class of materials employed in designi...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
The changing balance of forces at the nanoscale offers the opportunity to develop a new generation o...
The highly engineerable scattering properties of resonant optical antennas underpin the operation of...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
As a novel type of artificial media created recently, metamaterials demonstrate novel performance an...
In recent years, the emerging areas of nanophotonics and, in particular, plasmonics and metamaterial...
Metamaterials based on single-layer metallic Split Ring Resonators (SRR) and Wires have been demonst...
Semiconductor nanowires (NWs) are sub-wavelength structures which exhibit strong optical (Mie) reson...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Metamaterials offer a huge range of enhanced and novel functionalities that natural materials cannot...
Dynamic control over metamaterial optical properties is the basis for the use of metamaterials as ac...
Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved...
Metal-semiconductor nanostructures represent an important new class of materials employed in designi...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
The changing balance of forces at the nanoscale offers the opportunity to develop a new generation o...
The highly engineerable scattering properties of resonant optical antennas underpin the operation of...
Dynamic control over metamaterial optical properties is the basis for active metamaterials devices f...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
As a novel type of artificial media created recently, metamaterials demonstrate novel performance an...
In recent years, the emerging areas of nanophotonics and, in particular, plasmonics and metamaterial...
Metamaterials based on single-layer metallic Split Ring Resonators (SRR) and Wires have been demonst...
Semiconductor nanowires (NWs) are sub-wavelength structures which exhibit strong optical (Mie) reson...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Metamaterials offer a huge range of enhanced and novel functionalities that natural materials cannot...
Dynamic control over metamaterial optical properties is the basis for the use of metamaterials as ac...