We use fluorescent nanospheres as scalar detectors for the electric-field intensity in order to probe the near-field of an optical tip used in aperture-type near-field scanning optical microscopy (NSOM). Surprisingly, the recorded fluorescence images show two intensity lobes if the sphere diameter is smaller than the aperture diameter, as expected only in the case of vector detectors like single molecules. We present a simple but realistic, analytical model for the electric field created by light emitted from a NSOM tip which is in quantitative agreement with the experimental data
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
We use fluorescent nanospheres as scalar detectors for the electric-field intensity in order to prob...
International audienceWe discuss theoretically the concept of spatial resolution in near-field scann...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
orientation, single molecule. Summary Single dye molecules are used as local probes to map the spati...
Single dye molecules are used as local probes to map the spatial distribution of the squared electri...
Near-field Scanning Optical Microscopy (NSOM) is a powerful tool for investigating optical field wit...
Ridge nanoscale aperture antennas have been shown to be a high transmission nanoscale light source. ...
Two methodologies, aimed at increasing the sensitivity and resolution of near-field scanning optical...
Two methodologies, aimed at increasing the sensitivity and resolution of near-field scanning optical...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
We use fluorescent nanospheres as scalar detectors for the electric-field intensity in order to prob...
International audienceWe discuss theoretically the concept of spatial resolution in near-field scann...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
This chapter reports a broad overview of near-field optical probes. They represent the key componen...
orientation, single molecule. Summary Single dye molecules are used as local probes to map the spati...
Single dye molecules are used as local probes to map the spatial distribution of the squared electri...
Near-field Scanning Optical Microscopy (NSOM) is a powerful tool for investigating optical field wit...
Ridge nanoscale aperture antennas have been shown to be a high transmission nanoscale light source. ...
Two methodologies, aimed at increasing the sensitivity and resolution of near-field scanning optical...
Two methodologies, aimed at increasing the sensitivity and resolution of near-field scanning optical...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...
International audienceThe interpretation of the detection process in near-field optical microscopy i...