The optical response of irregular spherical nanoclusters (NCs) are studied by Monte Carlo simulations. Deviations from nominal arrangements are considered by introducing either randomly variable sizes of the constituent particles or random displacements of particle locations around the NC core. The impact of disorder on NC resonances is examined by decomposing the scattered fields in terms of contributions of electromagnetic multipoles, such as electric and magnetic dipoles, quadrupoles, and higher order moments
The interaction of light with matter strongly depends on the structure of the latter at wavelength s...
On-lattice Monte Carlo simulations of colloidal random-stacking hard-sphere colloidal crystals are p...
Self-assembly of oppositely charged nanoparticles (NPs) of varying diameters into nanoparticle supra...
The optical response of irregular spherical nanoclusters (NCs) are studied by Monte Carlo simulation...
Spherical nanoclusters (NCs) with a central dielectric core surrounded by several satellite plasmoni...
We report an investigation on the optical properties of three-dimensional nanoclusters (NCs) made by...
Many experimental systems consist of large ensembles of uncoupled or weakly interacting elements ope...
Thesis (Ph.D.)--University of Washington, 2018As the field of plasmonics develops, new knobs to turn...
Plasmonic nanoparticle synthesis provids a facile and cost-effective bottom-up solution to fabricati...
The damping of plasmons due to structural disorder may have important practical consequences. Here, ...
The geometrical arrangement of metallic nanoparticles plays a crucial role on the optical response o...
International audienceA numerical simulation was developed in order to determine the linear optical ...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
Abstract We study the optical response of eccentric nanoshells (i.e., spherical nanop...
We study the optical response of strongly coupled metal nanoparticle chains using rigorous multiple ...
The interaction of light with matter strongly depends on the structure of the latter at wavelength s...
On-lattice Monte Carlo simulations of colloidal random-stacking hard-sphere colloidal crystals are p...
Self-assembly of oppositely charged nanoparticles (NPs) of varying diameters into nanoparticle supra...
The optical response of irregular spherical nanoclusters (NCs) are studied by Monte Carlo simulation...
Spherical nanoclusters (NCs) with a central dielectric core surrounded by several satellite plasmoni...
We report an investigation on the optical properties of three-dimensional nanoclusters (NCs) made by...
Many experimental systems consist of large ensembles of uncoupled or weakly interacting elements ope...
Thesis (Ph.D.)--University of Washington, 2018As the field of plasmonics develops, new knobs to turn...
Plasmonic nanoparticle synthesis provids a facile and cost-effective bottom-up solution to fabricati...
The damping of plasmons due to structural disorder may have important practical consequences. Here, ...
The geometrical arrangement of metallic nanoparticles plays a crucial role on the optical response o...
International audienceA numerical simulation was developed in order to determine the linear optical ...
Self-assembled clusters of metallic nanoparticles separated by nanometric gaps generate strong plasm...
Abstract We study the optical response of eccentric nanoshells (i.e., spherical nanop...
We study the optical response of strongly coupled metal nanoparticle chains using rigorous multiple ...
The interaction of light with matter strongly depends on the structure of the latter at wavelength s...
On-lattice Monte Carlo simulations of colloidal random-stacking hard-sphere colloidal crystals are p...
Self-assembly of oppositely charged nanoparticles (NPs) of varying diameters into nanoparticle supra...