We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic antenna with sub-10 nm gap between metals. Simulations and experiments reveal the high radiative efficiency and directionality of the antenna
This paper presents measured fluorescence results for PMMA dye-coated 5×5 gold plasmonic nanoantenna...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
ABSTRACT: The enhanced local fields around plasmonic structures can lead to enhancement of the excit...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
Nanometallic optical antennas are rapidly gaining popularity in applications that require exquisite ...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
We will present plasmonic nanoantennas, composed of silver nanocubes strongly coupled to gold films,...
International audienceOptical nanoantennas have a great potential for enhancing light-matter interac...
International audienceWe theoretically study the emission of surface plasmon polaritons (SPPs) in cy...
Plasmonic antennas offer promising opportunities to control the emission of quantum objects. As a co...
We demonstrate a colloidally synthesized and tunable plasmonic platform for giant fluorescence enhan...
This paper presents measured fluorescence results for PMMA dye-coated 5×5 gold plasmonic nanoantenna...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
ABSTRACT: The enhanced local fields around plasmonic structures can lead to enhancement of the excit...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
The radiative processes associated with fluorophores and other radiating systems can be profoundly m...
Nanometallic optical antennas are rapidly gaining popularity in applications that require exquisite ...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
We will present plasmonic nanoantennas, composed of silver nanocubes strongly coupled to gold films,...
International audienceOptical nanoantennas have a great potential for enhancing light-matter interac...
International audienceWe theoretically study the emission of surface plasmon polaritons (SPPs) in cy...
Plasmonic antennas offer promising opportunities to control the emission of quantum objects. As a co...
We demonstrate a colloidally synthesized and tunable plasmonic platform for giant fluorescence enhan...
This paper presents measured fluorescence results for PMMA dye-coated 5×5 gold plasmonic nanoantenna...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
ABSTRACT: The enhanced local fields around plasmonic structures can lead to enhancement of the excit...