We map the complete plasmonic spectrum of silver nanodisks by electron energy loss spectroscopy and show that the mode which couples strongest to the electron beam has radial symmetry with no net dipole moment. Therefore, this mode does not couple to light and has escaped from observation in optical experiments. This radial breathing mode has the character of an extended two-dimensional surface plasmon with a wavenumber determined by the circular disk confinement. Its strong near fields can impact the hybridization in coupled plasmonic nanoparticles as well as couplings with nearby quantum emitters
The plasmon hybridization model of electromagnetic coupling between plasmonic nanoparticles predicts...
We demonstrate the hybridization of the plasmonic modes in directly coupled whispering gallery cavit...
The coupling of plasmonic nanoparticles can strongly modify their optical properties. Here, we show ...
We map the complete plasmonic spectrum of silver nanodisks by electron energy loss spectroscopy and ...
Due to a vanishing dipole moment, radial breathing modes in small flat plasmonic nanoparticles do no...
Abstract Background The plasmonic breathing modes of a metallic nanodisc are dark plasmonic modes an...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
We use cathodoluminescence (CL) spectroscopy in a transmission electron microscope to probe the radi...
Control of the optical properties of nano-plasmonic structures is essential for next-generation opti...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Lasing at the nanometre scale promises strong light-matter interactions and ultrafast operation. Pla...
The plasmon hybridization model of electromagnetic coupling between plasmonic nanoparticles predicts...
We demonstrate the hybridization of the plasmonic modes in directly coupled whispering gallery cavit...
The coupling of plasmonic nanoparticles can strongly modify their optical properties. Here, we show ...
We map the complete plasmonic spectrum of silver nanodisks by electron energy loss spectroscopy and ...
Due to a vanishing dipole moment, radial breathing modes in small flat plasmonic nanoparticles do no...
Abstract Background The plasmonic breathing modes of a metallic nanodisc are dark plasmonic modes an...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
We use cathodoluminescence (CL) spectroscopy in a transmission electron microscope to probe the radi...
Control of the optical properties of nano-plasmonic structures is essential for next-generation opti...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Lasing at the nanometre scale promises strong light-matter interactions and ultrafast operation. Pla...
The plasmon hybridization model of electromagnetic coupling between plasmonic nanoparticles predicts...
We demonstrate the hybridization of the plasmonic modes in directly coupled whispering gallery cavit...
The coupling of plasmonic nanoparticles can strongly modify their optical properties. Here, we show ...