The insertion of a metal-coated tip on the surface of a photonic crystal microcavity is used for simultaneous near field imaging of electric and magnetic fields in photonic crystal nanocavities, via the radiative emission of embedded semiconductor quantum dots (QD). The photoluminescence intensity map directly gives the electric field distribution, to which the electric dipole of the QD is coupled. The magnetic field generates, via Faraday's law, a circular current in the apex of the metallized probe that can be schematized as a ring. The resulting magnetic perturbation of the photonic modes induces a blue shift, which can be used to map the magnetic field, within a single near-field scan. (C) 2011 Elsevier B.V. All rights reserve
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
International audienceScanning near-field optical imaging (SNOM) using local active probes provides ...
The insertion of a metal-coated tip on the surface of a photonic crystal microcavity is used for sim...
We demonstrate the nonresonant magnetic interaction at optical frequencies between a photonic crysta...
In nano-optics, light is controlled at length scales smaller than the wavelength. Consequently, inve...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We demonstrate the nonresonant magnetic interaction at optical frequencies between a photonic crysta...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
We report a study of single quantum dots inside photonic crystal cavities with a low-temperature sca...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
International audienceScanning near-field optical imaging (SNOM) using local active probes provides ...
The insertion of a metal-coated tip on the surface of a photonic crystal microcavity is used for sim...
We demonstrate the nonresonant magnetic interaction at optical frequencies between a photonic crysta...
In nano-optics, light is controlled at length scales smaller than the wavelength. Consequently, inve...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We demonstrate the nonresonant magnetic interaction at optical frequencies between a photonic crysta...
Tailoring the electromagnetic field at the nanoscale has led to artificial materials exhibiting fasc...
We report a study of single quantum dots inside photonic crystal cavities with a low-temperature sca...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
Electric and magnetic optical fields carry the same amount of energy. Nevertheless, the efficiency w...
Nanophotonic structures, which offer a sub-wavelength control over light and nearby emitters, promis...
International audienceScanning near-field optical imaging (SNOM) using local active probes provides ...