Precise positioning of a plasmonic nanoparticle (NP) near a small dielectric surface is not only necessary for understanding gap-dependent interactions between a metal and dielectric but it is also a critical component in building ultrasensitive molecular rulers and force sensing devices. In this study we investigate the gap-dependent scattering of gold and silver NPs by controllably depositing them on an atomic force microscope (AFM) tip and monitoring their scattering within the evanescent field of a tin dioxide nanofiber waveguide. The enhanced distance-dependent scattering profiles due to plasmon-dielectric coupling effects show similar decays for both gold and silver NPs given the strong dependence of the coupling on the decaying power...
Plasmonic nanosystems are typically used in optical experiments to concentrate electromagnetic ener...
The understanding of interaction forces between nanoparticles in colloidal suspension is central to ...
Directional side scattering of light by individual gold nanoparticles (AuNPs) trimers assembled by t...
ABSTRACT: We experimentally demonstrate that plasmonic nanoparticles embedded in the evanescent fiel...
We experimentally demonstrate that plasmonic nanoparticles embedded in the evanescent field of subwa...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
Effect of silicon atomic force microscope probe position and particle spacing on the local absorptio...
The effect of nanoscale surface roughness on the gap plasmon resonance of gold nanoparticles on ther...
Plasmonic research is becoming increasingly focused on the integration of noble metal nanostructures...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
The effect of nanoscale surface roughness on the gap plasmon resonance of gold nanoparticles on ther...
We simulate and discuss the local electric-field enhancement in a system of a dielectric nanoparticl...
We propose and analyze a new type of mechanically robust optical nanofocusing probe with minimized e...
The control of nanogaps lies at the heart of plasmonics for nanoassemblies. The plasmon coupling sen...
Plasmonic nanosystems are typically used in optical experiments to concentrate electromagnetic ener...
The understanding of interaction forces between nanoparticles in colloidal suspension is central to ...
Directional side scattering of light by individual gold nanoparticles (AuNPs) trimers assembled by t...
ABSTRACT: We experimentally demonstrate that plasmonic nanoparticles embedded in the evanescent fiel...
We experimentally demonstrate that plasmonic nanoparticles embedded in the evanescent field of subwa...
We present a computational study of the near-field enhancement properties from a plasmonic nanomater...
Effect of silicon atomic force microscope probe position and particle spacing on the local absorptio...
The effect of nanoscale surface roughness on the gap plasmon resonance of gold nanoparticles on ther...
Plasmonic research is becoming increasingly focused on the integration of noble metal nanostructures...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
The gap-induced plasmonic response of metallic nanoparticles drastically changes the near and far-fi...
The effect of nanoscale surface roughness on the gap plasmon resonance of gold nanoparticles on ther...
We simulate and discuss the local electric-field enhancement in a system of a dielectric nanoparticl...
We propose and analyze a new type of mechanically robust optical nanofocusing probe with minimized e...
The control of nanogaps lies at the heart of plasmonics for nanoassemblies. The plasmon coupling sen...
Plasmonic nanosystems are typically used in optical experiments to concentrate electromagnetic ener...
The understanding of interaction forces between nanoparticles in colloidal suspension is central to ...
Directional side scattering of light by individual gold nanoparticles (AuNPs) trimers assembled by t...