Herein, we report the first demonstration of room temperature enhanced light-matter coupling in the visible regime for metamaterials using cooperative coupled quasi two dimensional quantum dot assemblies located at precise distances from the hyperbolic metamaterial (HMM) templates. The non-monotonic variation of the magnitude of strong coupling, manifested in terms of strong splitting of the photoluminescence of quantum dots, can be explained in terms of enhanced LDOS near the surface of such metamaterials as well as the plasmon mediated super-radiance of closely spaced quantum dots (QDs). Our methodology of enhancing broadband, room temperature, light-matter coupling in the visible regime for metamaterials opens up new possibilities of uti...
When interaction between light and matter is in the strong coupling region, matter has a significant...
The interaction between cavity modes and optical transitions leads to new coupled light-matter state...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Herein, we report the first demonstration of room temperature enhanced light-matter coupling in the ...
The complementary optical properties of surface plasmon excitations of metal nanostructures and long...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
Metamaterials, artificial electromagnetic media realized by subwavelength nano-structuring, have bec...
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...
Semiconductor nanocrystals, or quantum dots (QDs), simultaneously benefit from inexpensive low-tempe...
Semiconductor nanocrystals, or quantum dots (QDs), simultaneously benefit from inexpensive low-tempe...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Zero point fluctuations of the electromagnetic radiation field have profound effects on the electron...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
Light–matter interaction exploiting plasmons is attracting great interest in terms of a new twist, h...
When interaction between light and matter is in the strong coupling region, matter has a significant...
The interaction between cavity modes and optical transitions leads to new coupled light-matter state...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Herein, we report the first demonstration of room temperature enhanced light-matter coupling in the ...
The complementary optical properties of surface plasmon excitations of metal nanostructures and long...
We theoretically demonstrate that nanocomposites made of colloidal semiconductor quantum dot monolay...
Metamaterials, artificial electromagnetic media realized by subwavelength nano-structuring, have bec...
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...
Semiconductor nanocrystals, or quantum dots (QDs), simultaneously benefit from inexpensive low-tempe...
Semiconductor nanocrystals, or quantum dots (QDs), simultaneously benefit from inexpensive low-tempe...
Fundamental study on plasmonics excites surface plasmons opening possibility for stronger light-matt...
Zero point fluctuations of the electromagnetic radiation field have profound effects on the electron...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
Light–matter interaction exploiting plasmons is attracting great interest in terms of a new twist, h...
When interaction between light and matter is in the strong coupling region, matter has a significant...
The interaction between cavity modes and optical transitions leads to new coupled light-matter state...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...