The electromagnetic multipole method has been extensively adopted for a better understanding of the physical mechanism of localized surface plasmon. In this work, we quantitatively decomposed the total extinction spectra of typical silver nanoparticles into multipole components, which are shown to be quite different from qualitative assignment of resonance peaks reported previously. Taking the quasi-normal mode method as reference standard, we examined the scope of application of the electromagnetic multipole method in assigning plasmonic resonance peaks, and pointed out the necessity of employing eigenmode-based approaches when interpreting plasmonic spectra, which can hopefully lead to more physical insights into the underlying mechanisms...
We study the optical excitation of high-order surface plasmon resonance modes in individual Ag nanor...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
The surface plasmon resonance (SPR) of silver nanoparticles (AgNPs) was studied with the discrete di...
Resonant wavelengths of multipole (i.e., higher-order) plasmon resonance of polydisperse Ag nanorods...
Periodic nanoparticle arrays have attracted considerable interest recently since the lattice effect ...
A novel technique for the numerical analysis of plasmon resonances by using the fast multipole metho...
Collective surface electronic excitations on Ag(111) and Ag(110) have been studied by energy-loss-sp...
The photonic band structure of a three-dimensional lattice of metal spheres is calculated using an e...
Localized surface plasmon resonance (LSPR) in a silver (Ag) nanosphere dimer embedded in silicate gl...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Abstract A method for estimating the surface plasmon resonance modes of metal nanoparticle chains an...
We report a thorough and rigorous analysis of the plasmon modes of axisymmetric metallic nanoparticl...
A rich variety of dipolar and higher order plasmon resonances have been predicted for nanoscale cube...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
In this paper, the effects of silver nano-spheroid size and elongation on plasmon wavelength are inv...
We study the optical excitation of high-order surface plasmon resonance modes in individual Ag nanor...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
The surface plasmon resonance (SPR) of silver nanoparticles (AgNPs) was studied with the discrete di...
Resonant wavelengths of multipole (i.e., higher-order) plasmon resonance of polydisperse Ag nanorods...
Periodic nanoparticle arrays have attracted considerable interest recently since the lattice effect ...
A novel technique for the numerical analysis of plasmon resonances by using the fast multipole metho...
Collective surface electronic excitations on Ag(111) and Ag(110) have been studied by energy-loss-sp...
The photonic band structure of a three-dimensional lattice of metal spheres is calculated using an e...
Localized surface plasmon resonance (LSPR) in a silver (Ag) nanosphere dimer embedded in silicate gl...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Abstract A method for estimating the surface plasmon resonance modes of metal nanoparticle chains an...
We report a thorough and rigorous analysis of the plasmon modes of axisymmetric metallic nanoparticl...
A rich variety of dipolar and higher order plasmon resonances have been predicted for nanoscale cube...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
In this paper, the effects of silver nano-spheroid size and elongation on plasmon wavelength are inv...
We study the optical excitation of high-order surface plasmon resonance modes in individual Ag nanor...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
The surface plasmon resonance (SPR) of silver nanoparticles (AgNPs) was studied with the discrete di...