The optical properties of silver nano-particle ensembles are studied as a function of particle density by analyzing the light emission excited via electron injection from an STM tip. The particles are prepared with distinct dome and disk-like shapes on a Al2O3/NiAl(1 1 0) support. The particle density is varied over one order of magnitude by changing the Ag deposition temperature and the defect concentration in the oxide surface. With increasing density, a pronounced blue shift of the Ag plasmon mode is observed for ensembles of dome-like particles, whereas disk-like particles show relatively constant resonance energies. The observed evolution of plasmon energy as a function of particle density reflects the influence of electromagnetic inte...
Photon emission spectra from submicron silver particles induced by an electron beam have been measur...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The optical properties of silver nano-particle ensembles are studied as a function of particle densi...
Cathodoluminescence experiments have been performed on silver clusters, which were grown on well cha...
Cathodoluminescence experiments have been performed on silver clusters, which were grown on well cha...
The alloying of Ag and Au has been investigated on the level of individual clusters by analyzing the...
International audienceLaser excitation of surface plasmons on a silver granular surface has been stu...
The electronic properties of Ag particles on Al2O3/NiAl(1 1 0) have been investigated by low-tempera...
Studies on Ag nanoparticles grown on Highly Ordered Pyrolytic Graphite (HOPG) using HREELS provide d...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
Metallic nanostructures exhibit unique optical properties. These are caused by plasmon excitations, ...
Studies on Ag nanoparticles grown on Highly Ordered Pyrolytic Graphite (HOPG) using HREELS provide d...
The plasmon energy of Ag clusters produced on an amorphous carbon substrate by gas-aggregation techn...
Les réponses optiques d'agrégats de métaux nobles sont caractérisées par une absorption intense, sit...
Photon emission spectra from submicron silver particles induced by an electron beam have been measur...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The optical properties of silver nano-particle ensembles are studied as a function of particle densi...
Cathodoluminescence experiments have been performed on silver clusters, which were grown on well cha...
Cathodoluminescence experiments have been performed on silver clusters, which were grown on well cha...
The alloying of Ag and Au has been investigated on the level of individual clusters by analyzing the...
International audienceLaser excitation of surface plasmons on a silver granular surface has been stu...
The electronic properties of Ag particles on Al2O3/NiAl(1 1 0) have been investigated by low-tempera...
Studies on Ag nanoparticles grown on Highly Ordered Pyrolytic Graphite (HOPG) using HREELS provide d...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
Metallic nanostructures exhibit unique optical properties. These are caused by plasmon excitations, ...
Studies on Ag nanoparticles grown on Highly Ordered Pyrolytic Graphite (HOPG) using HREELS provide d...
The plasmon energy of Ag clusters produced on an amorphous carbon substrate by gas-aggregation techn...
Les réponses optiques d'agrégats de métaux nobles sont caractérisées par une absorption intense, sit...
Photon emission spectra from submicron silver particles induced by an electron beam have been measur...
We present an experimental study of the tunability of the silver nanoparticle localized plasmon reso...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...