Spherical nanoclusters (NCs) with a central dielectric core surrounded by several satellite plasmonic nanospheres have been recently investigated as aggregates supporting electric and magnetic collective resonances. Notably, the collective magnetic resonance has been exploited to provide magnetic properties in optics, i.e., materials with macroscopic relative permeability different from unity. The NCs discussed in this paper can be realized using state-of-the-art nanochemistry self-assembly techniques. Accordingly, perfectly regular disposition of the nanoplasmonic satellites is not possible and this paper constitutes the first comprehensive analysis of the effect of such irregularities onto the electric and magnetic collective resonances. ...
We present a bottom-up assembly route for a large-scale organization of plasmonic nanoparticles (NPs...
Optical properties of nanocluster-based plasmonic materials were studied along this thesis by the Ge...
The design and chemical synthesis of plasmonic nanoresonators exhibiting a strong magnetic response ...
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...
The optical response of irregular spherical nanoclusters (NCs) are studied by Monte Carlo simulation...
We investigate the optical properties of metamaterials formed by collections of three-dimensional cl...
We investigate the optical properties of metamaterials formed by collections of three-dimensional cl...
Raspberry-like metamolecules (RMMs), clusters of closely packed noble metal nanobeads self-assembled...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
The strong resonant interaction of plasmonic particles with light has been used in a wide range of a...
Thesis (Ph.D.)--University of Washington, 2018As the field of plasmonics develops, new knobs to turn...
We present a bottom-up assembly route for a large-scale organization of plasmonic nanoparticles (NPs...
Optical properties of nanocluster-based plasmonic materials were studied along this thesis by the Ge...
The design and chemical synthesis of plasmonic nanoresonators exhibiting a strong magnetic response ...
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...
The optical response of irregular spherical nanoclusters (NCs) are studied by Monte Carlo simulation...
We investigate the optical properties of metamaterials formed by collections of three-dimensional cl...
We investigate the optical properties of metamaterials formed by collections of three-dimensional cl...
Raspberry-like metamolecules (RMMs), clusters of closely packed noble metal nanobeads self-assembled...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
The self-assembly of colloids is an alternative to top-down processing that enables the fabrication ...
The strong resonant interaction of plasmonic particles with light has been used in a wide range of a...
Thesis (Ph.D.)--University of Washington, 2018As the field of plasmonics develops, new knobs to turn...
We present a bottom-up assembly route for a large-scale organization of plasmonic nanoparticles (NPs...
Optical properties of nanocluster-based plasmonic materials were studied along this thesis by the Ge...
The design and chemical synthesis of plasmonic nanoresonators exhibiting a strong magnetic response ...