Silver nanocubes (AgNCs), 60 nm, have four extinction surface plasmon resonance (SPR) peaks. The finite difference time domain (FDTD) simulation method is used to assign the absorption and scattering peaks and also to calculate the plasmon field intensity for AgNCs. Because AgNCs have a highly symmetric cubic shape, there is a uniform distribution of the plasmon field around them, and they are thus sensitive to asymmetric dielectric perturbations. When the dielectric medium around a nanoparticle is changed anisotropically, either by placing the particle on a substrate or by coating it asymmetrically with a solvent, the plasmon field is distorted, and the plasmonic absorption and scattering spectra could shift differently. For the 60 nm AgNC...
The refractive index (RI) sensitivity of extinction spectra was compared experimentally for silver n...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The bulk refractive index (RI) sensitivity of dispersed and immobilized silver nanoparticles of thre...
Angle and polarization dependent UV–visible reflection and transmission spectra were measured for mo...
Subwavelength noble metal nanoparticles can sustain highly localized electromagnetic fields at the p...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
Plasmon resonance spectra of supported Ag nanoparticles are studied by depositing the particles on d...
We report theoretical simulations of plasmonic near-field enhancement and polarization in a system c...
Modification of the plasmonic response of a metal nano-object due to interaction with a substrate is...
In this paper, different confinement potential approaches are considered in the simulation of size e...
The sensitivity of the surface plasmon resonance wavelength position in prolate and oblate metal nan...
The surface plasmon resonance (SPR) of silver nanoparticles (AgNPs) was studied with the discrete di...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
The refractive index (RI) sensitivity of extinction spectra was compared experimentally for silver n...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The bulk refractive index (RI) sensitivity of dispersed and immobilized silver nanoparticles of thre...
Angle and polarization dependent UV–visible reflection and transmission spectra were measured for mo...
Subwavelength noble metal nanoparticles can sustain highly localized electromagnetic fields at the p...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
Plasmon resonance spectra of supported Ag nanoparticles are studied by depositing the particles on d...
We report theoretical simulations of plasmonic near-field enhancement and polarization in a system c...
Modification of the plasmonic response of a metal nano-object due to interaction with a substrate is...
In this paper, different confinement potential approaches are considered in the simulation of size e...
The sensitivity of the surface plasmon resonance wavelength position in prolate and oblate metal nan...
The surface plasmon resonance (SPR) of silver nanoparticles (AgNPs) was studied with the discrete di...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
The object of research is plasmonic properties copper of monosulfide nanoparticles. One of the most ...
The refractive index (RI) sensitivity of extinction spectra was compared experimentally for silver n...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
The bulk refractive index (RI) sensitivity of dispersed and immobilized silver nanoparticles of thre...