We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas placed on top of SiO2 nanopillars. The reported process enables the fabrication of nanopillar dimers with gaps down to 15 nm and heights up to 1 μm. A clear dependence of the plasmonic resonance position on the dimer gap is observed for smaller pillar heights, showing the high uniformity and reproducibility of the process. It is shown how increasing the height of nanopillars significantly affects the recorded elastic scattering spectra from Au nanoantennas. The results are compared to finite-difference time-domain (FDTD) and finite-element method (FEM) simulations. Additionally, measured spectra are accompanied by dark-field microscopy images ...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
In this paper we present a method for the fabrication of plasmonic spherical dimers and oligomers wi...
The fabrication of large areas of gold nanopillar arrays by combining nanosphere lithography and ele...
We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas p...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
In this paper, the results of the successful fabrication as well as the optical backscattering chara...
The refractive index sensitivity of localized surface plasmon resonance sensors can be improved by p...
Plasmonic nanoantennas have found broad applications in the fields of photovoltaics, electroluminesc...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
Resonant optical nanoantennas hold great promise for applications in physics and chemistry1–6. Their...
The optical resonances of individual plasmonic dimer antennas are investigated using confocal darkfi...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
The authors fabricated two dimensional arrays of metal-dielectric-metal nanoantennas consisting of a...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
In this paper we present a method for the fabrication of plasmonic spherical dimers and oligomers wi...
The fabrication of large areas of gold nanopillar arrays by combining nanosphere lithography and ele...
We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas p...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
In this paper, the results of the successful fabrication as well as the optical backscattering chara...
The refractive index sensitivity of localized surface plasmon resonance sensors can be improved by p...
Plasmonic nanoantennas have found broad applications in the fields of photovoltaics, electroluminesc...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
Resonant optical nanoantennas hold great promise for applications in physics and chemistry1–6. Their...
The optical resonances of individual plasmonic dimer antennas are investigated using confocal darkfi...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
The authors fabricated two dimensional arrays of metal-dielectric-metal nanoantennas consisting of a...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
In this paper we present a method for the fabrication of plasmonic spherical dimers and oligomers wi...
The fabrication of large areas of gold nanopillar arrays by combining nanosphere lithography and ele...