Plasmon resonances have appeared as a promising method to boost the fluorescence intensity of single emitters. However, because research has focused on the enhancement at low excitation intensity, little is known about plasmon-fluorophore coupling near the point where the dye saturates. Here we study plasmon-enhanced fluorescence at a broad range of excitation intensities up to saturation. We adopt a novel DNA-mediated approach wherein dynamic single-molecule binding provides a controlled particle-fluorophore spacing, and dynamic rebinding circumvents artifacts due to photobleaching. We find that near saturation the maximum photon count rate is enhanced by more than 2 orders of magnitude at the optimal particle-fluorophore spacing, even for...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
We investigate the coupling of a single molecule to a single spherical gold nanoparticle acting as a...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
Plasmon resonances have appeared as a promising method to boost the fluorescence intensity of single...
Fluorescent dyes used for single-molecule spectroscopy can undergo millions of excitation-emission c...
International audienceSingle-molecule fluorescence techniques are essential for investigating the mo...
Photobleaching is an effect terminating the photon output of fluorophores, limiting the duration of ...
We present a numerical study on plasmon-enhanced single-molecule enzymology. We combine Brownian dyn...
<p>Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitat...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
ABSTRACT: We report giant suppression of photobleaching and a prolonged lifespan of single fluoresce...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
We demonstrate a single-molecule DNA sensor that employs plasmon-enhanced fluorescence combined with...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
We investigate the coupling of a single molecule to a single spherical gold nanoparticle acting as a...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
Plasmon resonances have appeared as a promising method to boost the fluorescence intensity of single...
Fluorescent dyes used for single-molecule spectroscopy can undergo millions of excitation-emission c...
International audienceSingle-molecule fluorescence techniques are essential for investigating the mo...
Photobleaching is an effect terminating the photon output of fluorophores, limiting the duration of ...
We present a numerical study on plasmon-enhanced single-molecule enzymology. We combine Brownian dyn...
<p>Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitat...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
ABSTRACT: We report giant suppression of photobleaching and a prolonged lifespan of single fluoresce...
Nanoantennas are well-known for their effective role in fluorescence enhancement, both in excitation...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
We demonstrate a single-molecule DNA sensor that employs plasmon-enhanced fluorescence combined with...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
We investigate the coupling of a single molecule to a single spherical gold nanoparticle acting as a...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...