This is the author accepted manuscript. The final version is available from EDP Sciences via the DOI in this recordWe present a simple model of collective plasmons in a dimerized chain of spherical metallic nanoparticles, an elementary example of a topologically nontrivial nanoplasmonic system. Taking into account long-range quasistatic dipolar interactions throughout the chain, we provide an exact analytical expression for the full quasistatic bandstructure of the collective plasmons. An explicit calculation of the Zak phase proves the robustness of the topological physics of the system against the inclusion of long-range Coulomb interactions, despite the broken chiral symmetry. Using an open quantum systems approach, which includes retard...
A prominent goal of nanophotonics is the efficient manipulation of light on the nanoscale. Topologic...
The focus of this thesis is the study of a chain of metal nanoparticles with alternating spacing, an...
In this thesis numerical methods are used to understand the individual and collective optical respon...
We study a one-dimensional plasmonic system with non-trivial topology: a chain of metallic nanoparti...
We study a one-dimensional plasmonic system with nontrivial topology: a chain of metallic nanopartic...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
We study a bipartite linear chain constituted by spherical metallic nanoparticles, where each nanopa...
We study a bipartite linear chain constituted by spherical metallic nanoparticles, where each nanopa...
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...
The coupled light-matter modes supported by plasmonic metasurfaces can be combined with topological ...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
A prominent goal of nanophotonics is the efficient manipulation of light on the nanoscale. Topologic...
The focus of this thesis is the study of a chain of metal nanoparticles with alternating spacing, an...
In this thesis numerical methods are used to understand the individual and collective optical respon...
We study a one-dimensional plasmonic system with non-trivial topology: a chain of metallic nanoparti...
We study a one-dimensional plasmonic system with nontrivial topology: a chain of metallic nanopartic...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
We study a bipartite linear chain constituted by spherical metallic nanoparticles, where each nanopa...
We study a bipartite linear chain constituted by spherical metallic nanoparticles, where each nanopa...
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...
The coupled light-matter modes supported by plasmonic metasurfaces can be combined with topological ...
This is the final version. Available on open access from the Royal Society via the DOI in this recor...
A prominent goal of nanophotonics is the efficient manipulation of light on the nanoscale. Topologic...
The focus of this thesis is the study of a chain of metal nanoparticles with alternating spacing, an...
In this thesis numerical methods are used to understand the individual and collective optical respon...