The three-dimensional morphological control of the individual metallic nanocrystals in a coupled structure imposes an electric field localization and enhancement in all three dimensions. We exploit the unique morphology of chemically synthesized nanotriangle monomers to form assembled dimers with a bowtie-like morphology in two orthogonal planes, effectively minimizing the volume of the interaction space to a point. The antenna has a longitudinal mode at 893 nm (1.39 eV), a 294 nm (0.68 eV) red shift compared to a monomer of equivalent size. This is indicative of extremely strong coupling because of the three-dimensional confinement of the electric field within the nanogap. By changing the geometry of the nanotriangle dimer, the longitudina...
We demonstrate the successful fabrication of various well-ordered 3D gold nanostructure arrays using...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
Conventional two-dimensional (2D) plasmonic arrays provide electric field intensity enhancement in t...
ABSTRACT: This paper reports that arrays of three-dimen-sional (3D), bowtie-shaped Au nanoparticle d...
peer reviewedAn effective Hamiltonian scheme combined with a GPU implementation of the linear-scalin...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
The local electric field enhancements of overlapping Ag triangular nanoplates are investigated using...
The confinement of light in cavities that are smaller than the optical diffraction limit can be achi...
Directed assembly of nano building blocks offers a versatile route to the creation of complex nanost...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
The surface plasmon resonances of gold contour bowtie nanostructures were simulated in the present s...
Light localization plays an important role in developing high resolution imaging and precision techn...
International audiencePlasmonic dimer nanoantennas can significantly boost the electric field streng...
Focused electron beam induced deposition (FEBID) is a leading nanolithography technique in terms of ...
International audienceLight localization is controlled at a scale of lambda/10 in the harmonic regim...
We demonstrate the successful fabrication of various well-ordered 3D gold nanostructure arrays using...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
Conventional two-dimensional (2D) plasmonic arrays provide electric field intensity enhancement in t...
ABSTRACT: This paper reports that arrays of three-dimen-sional (3D), bowtie-shaped Au nanoparticle d...
peer reviewedAn effective Hamiltonian scheme combined with a GPU implementation of the linear-scalin...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
The local electric field enhancements of overlapping Ag triangular nanoplates are investigated using...
The confinement of light in cavities that are smaller than the optical diffraction limit can be achi...
Directed assembly of nano building blocks offers a versatile route to the creation of complex nanost...
Coupling of light to the free electrons at metallic surfaces allows the confinement of electric fiel...
The surface plasmon resonances of gold contour bowtie nanostructures were simulated in the present s...
Light localization plays an important role in developing high resolution imaging and precision techn...
International audiencePlasmonic dimer nanoantennas can significantly boost the electric field streng...
Focused electron beam induced deposition (FEBID) is a leading nanolithography technique in terms of ...
International audienceLight localization is controlled at a scale of lambda/10 in the harmonic regim...
We demonstrate the successful fabrication of various well-ordered 3D gold nanostructure arrays using...
We demonstrate experimentally that plasmon resonant nanoparticle chains exhibit a nanoscale localize...
Conventional two-dimensional (2D) plasmonic arrays provide electric field intensity enhancement in t...