We experimentally show an all-optical multipolar decomposition of the lowest-order eigenmodes of a single gold nanoprism using azimuthally and radially polarized cylindrical vector beams. By scanning the particle through these tailored field distributions, the multipolar character of the eigenmodes gets encoded into 2D-scanning intensity maps even for higher-order contributions to the eigenmode that are too weak to be discerned in the direct far-field scattering response. This method enables a detailed optical mode analysis of individual nanoparticles. (C) 2015 AIP Publishing LLC
We introduce a new measurement system called Nanopolar interferometer devoted to monitor and charact...
We propose a scheme to retrieve the size parameters of a nanoparticle on a glass substrate at a scal...
Interference-based directional antennas typically consist of multiple dipoles with properly set dist...
We experimentally show an all-optical multipolar decomposition of the lowest-order eigenmodes of a s...
Controlled excitation and measurement of multipoles in nanoscatterers is an important task of increa...
Highly confined vectorial electromagnetic field distributions are an excellent tool for detailed stu...
Using metallic nanoparticles with a threefold symmetry thorough the study, the impact of the symmetr...
Controlled excitation and measurement of multipoles in nanoscatterers is an important task of increa...
Nanoparticles are rapidly becoming ubiquitous in modern technology and so there is an emerging need ...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We report a detailed investigation on the second harmonic generation (SHG) emission from single 150 ...
Using spectroscopic ellipsometry and analytical multiple scattering theory, we demonstrate significa...
Multipolar electromagnetic phenomena in sub-wavelength resonators are at the heart of metamaterial s...
The plasmon hybridization model of electromagnetic coupling between plasmonic nanoparticles predicts...
We study the optical excitation of high-order surface plasmon resonance modes in individual Ag nanor...
We introduce a new measurement system called Nanopolar interferometer devoted to monitor and charact...
We propose a scheme to retrieve the size parameters of a nanoparticle on a glass substrate at a scal...
Interference-based directional antennas typically consist of multiple dipoles with properly set dist...
We experimentally show an all-optical multipolar decomposition of the lowest-order eigenmodes of a s...
Controlled excitation and measurement of multipoles in nanoscatterers is an important task of increa...
Highly confined vectorial electromagnetic field distributions are an excellent tool for detailed stu...
Using metallic nanoparticles with a threefold symmetry thorough the study, the impact of the symmetr...
Controlled excitation and measurement of multipoles in nanoscatterers is an important task of increa...
Nanoparticles are rapidly becoming ubiquitous in modern technology and so there is an emerging need ...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We report a detailed investigation on the second harmonic generation (SHG) emission from single 150 ...
Using spectroscopic ellipsometry and analytical multiple scattering theory, we demonstrate significa...
Multipolar electromagnetic phenomena in sub-wavelength resonators are at the heart of metamaterial s...
The plasmon hybridization model of electromagnetic coupling between plasmonic nanoparticles predicts...
We study the optical excitation of high-order surface plasmon resonance modes in individual Ag nanor...
We introduce a new measurement system called Nanopolar interferometer devoted to monitor and charact...
We propose a scheme to retrieve the size parameters of a nanoparticle on a glass substrate at a scal...
Interference-based directional antennas typically consist of multiple dipoles with properly set dist...