We numerically demonstrate that a periodic array of metallic nanorods sustains a maximum near-field enhancement and a far field (FF)-induced transparency at the same energy and in-plane momentum. The coupling of bright and dark plasmonic lattice resonances, and electromagnetic retardation along the nanorod length, are responsible for this effect. A standing wave with a quadrupolar field distribution is formed, giving rise to a collective suppression of FF scattering and simultaneously enhanced local fields.IST/Imaging Science and TechnologyApplied Science
In this work we discuss the excitation of parallel collective resonances in arrays of gold nanoparti...
We demonstrate increased radiative coupling in periodic arrays of metal nanorods embedded below the ...
We investigate the far-field and near-field properties of aluminum nanorods fabricated by electron b...
We numerically demonstrate that a periodic array of metallic nanorods sustains a maximum near-field ...
We numerically demonstrate that a periodic array of metallic nanorods sustains a maximum near-field ...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
International audienceWe examine the excitation of plasmonic resonances in arrays of periodically ar...
Metallic nanoparticles behave as tiny antennas for light. Light illuminating such a particle can dri...
We report on drastic changes in the near-field spectrum as it evolves into the far field in periodic...
On sub-wavelength scales, photon-matter interactions are limited by diffraction. Electromagnetic rad...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
Comunicación presentada en la 12th International conference on Near-field Optics, Nanophotonics and ...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
When a small radiating or scattering object is placed near a multilayer array of plasmonic nanospher...
In this work we discuss the excitation of parallel collective resonances in arrays of gold nanoparti...
We demonstrate increased radiative coupling in periodic arrays of metal nanorods embedded below the ...
We investigate the far-field and near-field properties of aluminum nanorods fabricated by electron b...
We numerically demonstrate that a periodic array of metallic nanorods sustains a maximum near-field ...
We numerically demonstrate that a periodic array of metallic nanorods sustains a maximum near-field ...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
International audienceWe examine the excitation of plasmonic resonances in arrays of periodically ar...
Metallic nanoparticles behave as tiny antennas for light. Light illuminating such a particle can dri...
We report on drastic changes in the near-field spectrum as it evolves into the far field in periodic...
On sub-wavelength scales, photon-matter interactions are limited by diffraction. Electromagnetic rad...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
Comunicación presentada en la 12th International conference on Near-field Optics, Nanophotonics and ...
Depending on the experimental conditions and plasmonic systems, the correlations between near-field ...
When a small radiating or scattering object is placed near a multilayer array of plasmonic nanospher...
In this work we discuss the excitation of parallel collective resonances in arrays of gold nanoparti...
We demonstrate increased radiative coupling in periodic arrays of metal nanorods embedded below the ...
We investigate the far-field and near-field properties of aluminum nanorods fabricated by electron b...