We theoretically investigate plasmon polaritons in cubic lattices of spherical metallic nanoparticles. The nanoparticles, each supporting triply-degenerate localized surface plasmons, couple through the Coulomb dipole-dipole interaction, giving rise to collective plasmons that extend over the whole metamaterial. The latter hybridize with photons forming plasmon polaritons, which are the hybrid light-matter eigenmodes of the system. We derive general analytical expressions to evaluate both plasmon and plasmon-polariton dispersions and the corresponding eigenstates. These are obtained within a Hamiltonian formalism, which takes into account retardation effects in the dipolar interaction between the nanoparticles and considers the dielectric p...
In this thesis, the plasmon hybridization method is extended theoretically to explore the optical pr...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...
We theoretically investigate plasmon polaritons in cubic lattices of spherical metallic nanoparticle...
This is the final version. Available from the American Physical Society via the DOI in this record.W...
In the first part, we investigate plasmon-polaritons in cubic metacrystals of spherical metallic nan...
Crystals of plasmonic metal nanoparticles have intriguing optical properties. They reach the regimes...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
\u3cp\u3eWhen the electromagnetic modes supported by plasmonic-based cavities interact strongly with...
In this thesis, the plasmon hybridization method is extended theoretically to explore the optical pr...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...
We theoretically investigate plasmon polaritons in cubic lattices of spherical metallic nanoparticle...
This is the final version. Available from the American Physical Society via the DOI in this record.W...
In the first part, we investigate plasmon-polaritons in cubic metacrystals of spherical metallic nan...
Crystals of plasmonic metal nanoparticles have intriguing optical properties. They reach the regimes...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We consider plasmonic metasurfaces constituted by an arbitrary periodic arrangement of spherical met...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
\u3cp\u3eWhen the electromagnetic modes supported by plasmonic-based cavities interact strongly with...
In this thesis, the plasmon hybridization method is extended theoretically to explore the optical pr...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...
When the electromagnetic modes supported by plasmonic-based cavities interact strongly with molecule...