The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-field properties of nanoparticle antenna. Similar to a pair of metallic nanostructures, the two nanoparticles, with a dielectric core and silver shell in close proximity, exhibit multiple high energy plasmonic resonances at the short wavelength end of their optical spectrum. In this article, we have overwhelmingly investigated the disparity in the electric field of a core–shell dimer antenna when the gap between nanoparticles within the dimer becomes sub-nanometer in length. We used an electromagnetic planewave to excite the core–shell nanoparticles within the dimer. Frequency domain Finite Element Method (FEM) was employed for the numerical op...
We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas p...
Here, we examine the electromagnetic (EM) energy coupling and hybridization of plasmon resonances be...
Precise positioning of a plasmonic nanoparticle (NP) near a small dielectric surface is not only nec...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
Featured Application Core-shell nanoparticle antennas facilitate the realization of optical metamate...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
In this paper, we report on the manipulation of the near-field coupling in individual gold nanoanten...
We study the interplay between localized surface plasmon resonances from metallic cores and electrom...
We use numerical simulations based on the surface integral technique to study the detection limit of...
Localized surface plasmon resonance (LSPR) in a silver (Ag) nanosphere dimer embedded in silicate gl...
*S Supporting Information ABSTRACT: The optical response of a plasmonic gap-antenna is mainly determ...
Coupling gaps of dipole radiating structures with implications for fabricating antennas using nanoma...
A very electrically small, active open cylindrical coated nanoparticle model is constructed, and its...
11 pags., 8 figs. -- OCIS codes: (240.6680) Surface plasmons; (350.4990) ParticlesThe optical resona...
We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas p...
Here, we examine the electromagnetic (EM) energy coupling and hybridization of plasmon resonances be...
Precise positioning of a plasmonic nanoparticle (NP) near a small dielectric surface is not only nec...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
Dimers of metallic nanoparticles can serve as antennas to locally enhance optical fields through pla...
Featured Application Core-shell nanoparticle antennas facilitate the realization of optical metamate...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
In this paper, we report on the manipulation of the near-field coupling in individual gold nanoanten...
We study the interplay between localized surface plasmon resonances from metallic cores and electrom...
We use numerical simulations based on the surface integral technique to study the detection limit of...
Localized surface plasmon resonance (LSPR) in a silver (Ag) nanosphere dimer embedded in silicate gl...
*S Supporting Information ABSTRACT: The optical response of a plasmonic gap-antenna is mainly determ...
Coupling gaps of dipole radiating structures with implications for fabricating antennas using nanoma...
A very electrically small, active open cylindrical coated nanoparticle model is constructed, and its...
11 pags., 8 figs. -- OCIS codes: (240.6680) Surface plasmons; (350.4990) ParticlesThe optical resona...
We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas p...
Here, we examine the electromagnetic (EM) energy coupling and hybridization of plasmon resonances be...
Precise positioning of a plasmonic nanoparticle (NP) near a small dielectric surface is not only nec...