Plasmonics and photonic crystals are two complementary approaches to tailor single-emitter fluorescence, using strong local field enhancements near metals on one hand and spatially extended photonic band structure effects on the other hand. Here, we explore the emergence of spontaneous emission control by finite-sized hexagonal arrays of nanoapertures milled in gold film. We demonstrate that already small lattices enable highly directional and enhanced emission from single fluorescent molecules in the central aperture. Even for clusters just four unit cells across, the directionality is set by the plasmonic crystal band structure, as confirmed by full-wave numerical simulations. This realization of plasmonic phase array antennas driven by s...
Plasmon-based optical antennas featuring a nanometer-sized gap can enhance the photophysical propert...
The coupling of nanostructures with emitters opens up ways for the realization of man-made subwavele...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
A chieving a complete manipulation of the generally weak optical signal from a single quantum emitte...
In this study, we theoretically investigated the single-molecule fluorescence enhancement in a slit-...
Nanoscale plasmonic structures allow for control of the emission of single emitters, such as fluores...
Nanoscale plasmonic structures allow for control of the emission of single emitters, such as fluores...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
The greatly enhanced fields near metal nanoparticles have demonstrated remarkable optical properties...
Plasmon-based optical antennas featuring a nanometer-sized gap can enhance the photophysical propert...
The coupling of nanostructures with emitters opens up ways for the realization of man-made subwavele...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...
A chieving a complete manipulation of the generally weak optical signal from a single quantum emitte...
In this study, we theoretically investigated the single-molecule fluorescence enhancement in a slit-...
Nanoscale plasmonic structures allow for control of the emission of single emitters, such as fluores...
Nanoscale plasmonic structures allow for control of the emission of single emitters, such as fluores...
The present work focuses on the modification of spontaneous emission of fluorescent emitters using m...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
International audienceControlling the fluorescence emission from nanoscale quantum emitters such as ...
The greatly enhanced fields near metal nanoparticles have demonstrated remarkable optical properties...
Plasmon-based optical antennas featuring a nanometer-sized gap can enhance the photophysical propert...
The coupling of nanostructures with emitters opens up ways for the realization of man-made subwavele...
We demonstrate a strong, 5-fold enhancement of the radiative decay rate from highly efficient fluore...