Engineering the optical properties using artificial nanostructured media known as metamaterials has led to breakthrough devices with capabilities from super-resolution imaging to invisibility. In this article, we review metamaterials for quantum nanophotonic applications, a recent development in the field. This seeks to address many challenges in the field of quantum optics using recent advances in nanophotonics and nanofabrication. We focus on the class of nanostructured media with hyperbolic dispersion that have emerged as one of the most promising metamaterials with a multitude of practical applications from subwavelength imaging, nanoscale waveguiding, biosensing to nonlinear switching. We present the various design and characterization...
With the developments in nanotechnology that enable atoms, singly or in clumps, to be moved and arra...
Computational nanophotonics has already made a disruptive impact on the photonic and optoelectronic ...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
Solid-state quantum optics with quantum dots in photonic nanostructures Abstract: Quantum nanophoto...
Cataloged from PDF version of article.We theoretically demonstrate that nanocomposites made of collo...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
In recent years a wide interest has been spurred by the inverse design of artificial materials for n...
Metamaterials, artificially structured nanomaterials, have enabled unprecedented and extraordinary p...
Metamaterials, artificial electromagnetic media realized by subwavelength nano-structuring, have bec...
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...
Summarization: Nanoscale quantum optics explores quantum phenomena in nanophotonics systems for adva...
We show that metamaterials with hyperbolic dispersion support a large number of electromagnetic stat...
Strong coupling of nano-antenna with the quantum emitters is required for many quantum applications....
Zero point fluctuations of the electromagnetic radiation field have profound effects on the electron...
With the developments in nanotechnology that enable atoms, singly or in clumps, to be moved and arra...
Computational nanophotonics has already made a disruptive impact on the photonic and optoelectronic ...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
Solid-state quantum optics with quantum dots in photonic nanostructures Abstract: Quantum nanophoto...
Cataloged from PDF version of article.We theoretically demonstrate that nanocomposites made of collo...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
In recent years a wide interest has been spurred by the inverse design of artificial materials for n...
Metamaterials, artificially structured nanomaterials, have enabled unprecedented and extraordinary p...
Metamaterials, artificial electromagnetic media realized by subwavelength nano-structuring, have bec...
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...
Summarization: Nanoscale quantum optics explores quantum phenomena in nanophotonics systems for adva...
We show that metamaterials with hyperbolic dispersion support a large number of electromagnetic stat...
Strong coupling of nano-antenna with the quantum emitters is required for many quantum applications....
Zero point fluctuations of the electromagnetic radiation field have profound effects on the electron...
With the developments in nanotechnology that enable atoms, singly or in clumps, to be moved and arra...
Computational nanophotonics has already made a disruptive impact on the photonic and optoelectronic ...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...