We investigate the superposition properties of the dipole and quadrupole plasmon modes in the near field both experimentally, by using photoemission electron microscopy (PEEM), and theoretically. In particular, the asymmetric near-field distributions on gold (Au) nanodisks and nanoblocks under oblique incidence with different polarizations are investigated in detail. The results of PEEM measurements show that the evolutions of the asymmetric near-field distributions are different between the excitation with s-polarized and p-polarized light. The experimental results can be reproduced very well by numerical simulations and interpreted as the superposition of the dipole and quadrupole modes with the help of analytic calculations. Moreover, we...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Exposing metal-dielectric structures to light can result in surface plasmon excitation and propagati...
Silver (Ag) and gold (Au) nanoparticles are known to have very strong plasmonic fields among the oth...
Dipole and quadrupole modes are the two lowest orders of localized surface plasmon resonance (LSPR) ...
We studied the near-field properties of localized surface plasmon resonances in finite linear gold n...
The main objective of this thesis is to interpret experimental measurements of the plasmonic propert...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
Strongly coupled plasmons in a system of individual gold nanoparticles placed at subnanometer distan...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Optical properties of single gold nanodiscs were studied by scanning near-field optical microscopy. ...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
A precise understanding of the near-field distributions of plasmonic nanostructures is indispensable...
International audienceThin gold stripes, featuring various widths in the micrometer range, were micr...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Exposing metal-dielectric structures to light can result in surface plasmon excitation and propagati...
Silver (Ag) and gold (Au) nanoparticles are known to have very strong plasmonic fields among the oth...
Dipole and quadrupole modes are the two lowest orders of localized surface plasmon resonance (LSPR) ...
We studied the near-field properties of localized surface plasmon resonances in finite linear gold n...
The main objective of this thesis is to interpret experimental measurements of the plasmonic propert...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
Strongly coupled plasmons in a system of individual gold nanoparticles placed at subnanometer distan...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Optical properties of single gold nanodiscs were studied by scanning near-field optical microscopy. ...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
A precise understanding of the near-field distributions of plasmonic nanostructures is indispensable...
International audienceThin gold stripes, featuring various widths in the micrometer range, were micr...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
The spatiotemporal origin of plasmonic chiroptical responses in nanostructures remains unexplored an...
Exposing metal-dielectric structures to light can result in surface plasmon excitation and propagati...
Silver (Ag) and gold (Au) nanoparticles are known to have very strong plasmonic fields among the oth...