This presentation provides an overview of the recent progress in the enhancement of the spectroscopic characteristics of the glass embedded with nanoparticles (NPs). Some of our research activities with few significantly new results are highlighted and facilely analyzed. The science and technology dealing with the manipulation of the physical properties of rare earth doped inorganic glasses by embedding metallic NPs or nanoclusters produce the so-called 'nanoglass'. Meanwhile, the spectroscopic enhancement relates the intensity of the luminescence measured at certain transition. The enhancement which expectedly due to the 'plasmonics wave' (referring to the coherent coupling of photons to free electron oscillations called plasmon) occurs at...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Robust and versatile strategies for the development of functional nanostructured materials often foc...
This presentation provides a panoramic overview of the recent progress in nanoglass plasmonics, chal...
Incorporating metallic nanoparticles (NPs) in glass has been of intense artistic interest and scient...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
Abstract: A novel, easy-to-implement, method to create fine optical structures in dielectric metal-d...
Abstract Glass containing optically active nanoparticles have been manufactured for centuries. Howev...
Abstract Glass containing optically active nanoparticles have been manufactured for centuries. Howev...
Glass containing optically active nanoparticles have been manufactured for centuries. However, only ...
Particular attention has being given to metal–dielectric nanostructured materials, due to the well k...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Robust and versatile strategies for the development of functional nanostructured materials often foc...
This presentation provides a panoramic overview of the recent progress in nanoglass plasmonics, chal...
Incorporating metallic nanoparticles (NPs) in glass has been of intense artistic interest and scient...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
We explore different approaches to achieve co-doping of glasses with rare earth ions and metallic na...
Abstract: A novel, easy-to-implement, method to create fine optical structures in dielectric metal-d...
Abstract Glass containing optically active nanoparticles have been manufactured for centuries. Howev...
Abstract Glass containing optically active nanoparticles have been manufactured for centuries. Howev...
Glass containing optically active nanoparticles have been manufactured for centuries. However, only ...
Particular attention has being given to metal–dielectric nanostructured materials, due to the well k...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Controlling light interactions with matter on the nanometer scale provides for compelling opportunit...
Robust and versatile strategies for the development of functional nanostructured materials often foc...