Minimizing the luminescence lifetime while maintaining a high emission quantum yield is paramount in optimizing the excitation cross-section, radiative decay rate, and brightness of quantum solid-state light sources, particularly at room temperature, where nonradiative processes can dominate. We demonstrate here that DNA-templated 60 and 80 nm diameter gold nanoparticle dimers, featuring one fluorescent molecule, provide single-photon emission with lifetimes that can fall below 10 ps and typical quantum yields in a 45–70% range. Since these colloidal nanostructures are obtained as a purified aqueous suspension, fluorescence spectroscopy can be performed on both fixed and freely diffusing nanostructures to quantitatively estimate the distrib...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
We demonstrate that time-resolved fluorescence spectroscopy is a powerful tool to investigate the co...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
We combine interferometric detection of single gold nanoparticles, single molecule microscopy, and f...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Reaching reproducible strong coupling between a quantum emitter and a plasmonic resonator at room te...
Solid-state quantum emitters are in high demand for emerging technologies such as advanced sensing a...
International audienceHybrid nanostructures, in which a known number of quantum emitters are strongl...
In this article, luminescent properties of gold nanoclusters (AuNCs) were studied at the single nano...
International audiencehe intrinsic one-photon excited photoluminescence (PL) of dimers and monomers ...
Colloidal semiconductor quantum dots (QDs) are excellent luminescent nanomaterials for a broad range...
none5noFluorescence bioimaging is a non-invasive technique that permits to investigate living organi...
Labeling cells and tissues with fluorescent probes, such as organic dyes and quantum dots (Qdots) is...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
We demonstrate that time-resolved fluorescence spectroscopy is a powerful tool to investigate the co...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
We combine interferometric detection of single gold nanoparticles, single molecule microscopy, and f...
Gold nanostructures act as optical antennas : they couple efficiently in the near field to photon em...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Reaching reproducible strong coupling between a quantum emitter and a plasmonic resonator at room te...
Solid-state quantum emitters are in high demand for emerging technologies such as advanced sensing a...
International audienceHybrid nanostructures, in which a known number of quantum emitters are strongl...
In this article, luminescent properties of gold nanoclusters (AuNCs) were studied at the single nano...
International audiencehe intrinsic one-photon excited photoluminescence (PL) of dimers and monomers ...
Colloidal semiconductor quantum dots (QDs) are excellent luminescent nanomaterials for a broad range...
none5noFluorescence bioimaging is a non-invasive technique that permits to investigate living organi...
Labeling cells and tissues with fluorescent probes, such as organic dyes and quantum dots (Qdots) is...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
The dependence of quantum dot (QD) fluorescence emission on the proximity of 30 nm gold nanoparticle...
We demonstrate that time-resolved fluorescence spectroscopy is a powerful tool to investigate the co...