Single-molecule detection has become an indispensable technology in life science, and medical research. In order to get meaningful information on many biological processes, single-molecule analysis is required in micro-molar concentrations. At such high concentrations, it is very challenging to isolate a single molecule with conventional diffraction-limited optics. Recently, optical aperture nanoantennas (OANs) have emerged as a powerful tool to enhance the single-molecule detection under a physiological environment. The OANs, which consist of nano-scale apertures on a metallic film, have the following unique properties: (1) nanoscale light confinement; (2) enhanced fluorescence emission; (3) tunable radiation pattern; (4) reduced backgroun...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields into subwavelength vo...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by enab...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields to subwavelength volu...
International audienceSingle molecule fluorescence techniques [1-3] are key for several applications...
The advent of highly sensitive photodetectors and the development of photostabilization strategies m...
Single-molecule detection has become a unique and indispensable tool for the study of molecular moti...
International audienceDiffraction ultimately limits the fluorescence collected from a single molecul...
We report experimental behaviors of polarization-dependent, plasmonic-enhanced molecular fluorescenc...
We report experimental behaviors of polarization-dependent, plasmonlc-enhanced molecular fluorescenc...
The advent of highly sensitive photodetectors and the development of photostabilization strategies m...
Detecting small concentrations of molecules down to the single molecule limit has impact on areas su...
© 2014 OSA.In this letter, we proposed and numerically demonstrated a novel plasmonic nanopore platf...
Plasmonic nanoantennas are ideal for single molecule detection since they nano-focus the light beyon...
ABSTRACT: Plasmonic antennas offer extremely promising strategies to enhance single molecule fluores...
International audienceSingle-molecule fluorescence techniques are essential for investigating the mo...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields into subwavelength vo...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by enab...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields to subwavelength volu...
International audienceSingle molecule fluorescence techniques [1-3] are key for several applications...
The advent of highly sensitive photodetectors and the development of photostabilization strategies m...
Single-molecule detection has become a unique and indispensable tool for the study of molecular moti...
International audienceDiffraction ultimately limits the fluorescence collected from a single molecul...
We report experimental behaviors of polarization-dependent, plasmonic-enhanced molecular fluorescenc...
We report experimental behaviors of polarization-dependent, plasmonlc-enhanced molecular fluorescenc...
The advent of highly sensitive photodetectors and the development of photostabilization strategies m...
Detecting small concentrations of molecules down to the single molecule limit has impact on areas su...
© 2014 OSA.In this letter, we proposed and numerically demonstrated a novel plasmonic nanopore platf...
Plasmonic nanoantennas are ideal for single molecule detection since they nano-focus the light beyon...
ABSTRACT: Plasmonic antennas offer extremely promising strategies to enhance single molecule fluores...
International audienceSingle-molecule fluorescence techniques are essential for investigating the mo...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields into subwavelength vo...
Single-molecule fluorescence spectroscopy has revolutionized the field of biophysical sciences by enab...
Plasmonic nanocavities are able to engineer and confine electromagnetic fields to subwavelength volu...