The optical properties of coupled metallic nanorods are studied to investigate the use of coupled plasmonic structures in field-enhanced spectroscopies. Light scattering by coupled nanorods is calculated with the boundary element method, including retardation. The modes of coupled nanorod systems are calculated by the boundary charge method and discussed in terms of their symmetry. Similar scattering behavior for isolated nanorods and pairs of nanorods can mask the very different local responses that produce near-field enhancement. The response of isolated rods redshifts with increasing rod length because intrarod restoring forces are reduced. The near- and far-field responses increase monotonically with increasing rod length (increasing po...
We present an analytical model that takes into account the coupling between the surface plasmon mode...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
AbstractIn the fast evolving field of nanoscience and nanotechnology, where size and shape are cruci...
I believe that my research work on the plasmonic spectroscopy of metallic nanostructures has provide...
A nanoparticle’s shape and size determine its optical properties. Nanorods are nanoparticles that ha...
As science progresses at the nanoscopic level, it becomes more and more important to comprehend the ...
Materials science has observed a continuous increase in the use of metal nanoparticles in a wide ran...
A nanoparticle’s shape and size determine its optical properties. Nanorods are nanoparticles that ha...
Materials science has observed a continuous increase in the use of metal nanoparticles in a wide ran...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
For this thesis, I have realised some experimental works using electron microscopy and electron spec...
For this thesis, I have realised some experimental works using electron microscopy and electron spec...
We study the coupling induced by retardation effects when two plasmon-resonant nanoparticles are int...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
Noble metal nanostructures possess unique properties including large near-field enhancement and stro...
We present an analytical model that takes into account the coupling between the surface plasmon mode...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
AbstractIn the fast evolving field of nanoscience and nanotechnology, where size and shape are cruci...
I believe that my research work on the plasmonic spectroscopy of metallic nanostructures has provide...
A nanoparticle’s shape and size determine its optical properties. Nanorods are nanoparticles that ha...
As science progresses at the nanoscopic level, it becomes more and more important to comprehend the ...
Materials science has observed a continuous increase in the use of metal nanoparticles in a wide ran...
A nanoparticle’s shape and size determine its optical properties. Nanorods are nanoparticles that ha...
Materials science has observed a continuous increase in the use of metal nanoparticles in a wide ran...
We study the light scattering and surface plasmon resonances of Au nanorods that are commonly used a...
For this thesis, I have realised some experimental works using electron microscopy and electron spec...
For this thesis, I have realised some experimental works using electron microscopy and electron spec...
We study the coupling induced by retardation effects when two plasmon-resonant nanoparticles are int...
Metallic nanogap dimers are extremely useful for enhancing surface-enhanced Raman scattering and var...
Noble metal nanostructures possess unique properties including large near-field enhancement and stro...
We present an analytical model that takes into account the coupling between the surface plasmon mode...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
AbstractIn the fast evolving field of nanoscience and nanotechnology, where size and shape are cruci...