We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolayers placed between metal nanoparticle monolayers can function as multilayer hyperbolic metamaterials. Depending on the thickness of the spacer between the quantum dot and nanoparticle layers, the effective permittivity tensor of the nanocomposite is shown to become indefinite, resulting in increased photonic density of states and strong enhancement of quantum dot luminescence. This explains the results of recent experiments [T. Ozel et al., ACS Nano 5, 1328 (2011)] and confirms that hyperbolic metamaterials are capable of increasing the radiative decay rate of emission centers inside them. The proposed theoretical framework can also be used t...
Strong coupling of nano-antenna with the quantum emitters is required for many quantum applications....
Here we present an application of a high throughput nanofabrication technique to the creation of a p...
The multi-component nanomaterials combine the individual properties and give rise to emergent phenom...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
Cataloged from PDF version of article.We theoretically demonstrate that nanocomposites made of collo...
We report that hybridizing semiconductor quantum dots with plasmonic metamaterial leads to a multi-f...
Photoluminescence including fluorescence plays a great role in a wide variety of applications from b...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Engineering the optical properties using artificial nanostructured media known as metamaterials has ...
We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an arti...
Colloidal metasurfaces are two-dimensional arrays of subwavelength resonators generally composed of ...
Herein, we report the first demonstration of room temperature enhanced light-matter coupling in the ...
We present experimental and theoretical results on monolayer colloidal cadmium selenide quantum dot ...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
A theoretical investigation of loss-compensation capabilities in composite materials made of plasmon...
Strong coupling of nano-antenna with the quantum emitters is required for many quantum applications....
Here we present an application of a high throughput nanofabrication technique to the creation of a p...
The multi-component nanomaterials combine the individual properties and give rise to emergent phenom...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
Cataloged from PDF version of article.We theoretically demonstrate that nanocomposites made of collo...
We report that hybridizing semiconductor quantum dots with plasmonic metamaterial leads to a multi-f...
Photoluminescence including fluorescence plays a great role in a wide variety of applications from b...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Engineering the optical properties using artificial nanostructured media known as metamaterials has ...
We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an arti...
Colloidal metasurfaces are two-dimensional arrays of subwavelength resonators generally composed of ...
Herein, we report the first demonstration of room temperature enhanced light-matter coupling in the ...
We present experimental and theoretical results on monolayer colloidal cadmium selenide quantum dot ...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
A theoretical investigation of loss-compensation capabilities in composite materials made of plasmon...
Strong coupling of nano-antenna with the quantum emitters is required for many quantum applications....
Here we present an application of a high throughput nanofabrication technique to the creation of a p...
The multi-component nanomaterials combine the individual properties and give rise to emergent phenom...