International audienceHarnessing the optical properties of noble metals down to the nanometer-scale is a key step towards fast and low-dissipative information processing. At the 10-nm length scale, metal crystallinity and patterning as well as probing of surface plasmon (SP) properties must be controlled with a challenging high level of precision. Here, we demonstrate that ultimate lateral confinement and delocalization of SP modes are simultaneously achieved in extended self-assembled networks comprising linear chains of partially fused gold nanoparticles. The spectral and spatial distributions of the SP modes associated with the colloidal superstructures are evidenced by performing monochromated electron energy loss spectroscopy with a na...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
International audienceHarnessing the optical properties of noble metals down to the nanometer-scale ...
Chains of metallic nanoparticles sustain strongly confined surface plasmons with relatively low diel...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Asymmetric nanoparticle trimers composed of particles with increasing diameter act as "plasmoni...
The main objective of this thesis is to interpret experimental measurements of the plasmonic propert...
Chains of coupled metallic nanoparticles are of special interest for plasmonic applications because ...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
The assembly of metal nanocrystals offers a flexible method for creating new materials with tunable,...
Localized surface plasmon resonance (LSPR) arises when light interacts with metallic nanoparticles (...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
International audienceHarnessing the optical properties of noble metals down to the nanometer-scale ...
Chains of metallic nanoparticles sustain strongly confined surface plasmons with relatively low diel...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
[[abstract]]The rich structure of bright and dark surface-plasmon modes localized in individual and ...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Asymmetric nanoparticle trimers composed of particles with increasing diameter act as "plasmoni...
The main objective of this thesis is to interpret experimental measurements of the plasmonic propert...
Chains of coupled metallic nanoparticles are of special interest for plasmonic applications because ...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
The assembly of metal nanocrystals offers a flexible method for creating new materials with tunable,...
Localized surface plasmon resonance (LSPR) arises when light interacts with metallic nanoparticles (...
Plasmonic multinanoparticle systems exhibit collective electric and magnetic resonances that are fun...
Plasmonic antennas have enabled a wealth of applications that exploit tailored near-fields and radia...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...