The illumination of plasmonic mesostructures produces high confinement of light in their vicinity. This confinement of light can be enhanced in the gap between the two metallic nanorods of a nanonantenna, in particular for the design of biosensors. The nanometric gap can be reduced if the elevation of temperature of the nanonantenna is sufficient, and therefore the fine tuning of the sensor requires the description of the photo-thermal induced dilation. The multiphysics problem associated to such photo-thermal and mechanical effects is modeled through a Finite Element Method (FEM). The problem consists in computing the electromagnetic field, the temperature and the induced dilation surface. This contribution consists in discussing the numer...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
A novel and easy approach to implement is developed to analyze the degree of convergence, confinemen...
We simulate and discuss the local electric-field enhancement in a system of a dielectric nanoparticl...
International audienceThe illumination of plasmonic mesostructures produces high confinement of ligh...
Abstract — The illumination of a dimer metallic nanostructure is known to produce an in-tense source...
Multiphysics simulation of light-matter interaction, induced temperature and dilation in nanostructu...
Plasmonic optical tweezers and thermophoresis are promising tools for nanomaterial manipulation. Whe...
Plasmonic structures are renowned for their capability to efficiently convert light into heat at the...
(1) Background: The ability of metal nanoparticles to carry other molecules and their electromagneti...
Metallic nanostructures supporting localized surface plasmon resonances have the potential to both g...
In this dissertation, the nanoantenna is used for the application of optical limiting. The strong lo...
La simulation multiphysique de l'interaction rayonnement-matière, des effets thermiques et mécanique...
In plasmonics, the accurate computation of the electromagnetic field enhancement is necessary in det...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
2013-04-16In this thesis, plasmonic properties of metal nanostructures are investigated by electroma...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
A novel and easy approach to implement is developed to analyze the degree of convergence, confinemen...
We simulate and discuss the local electric-field enhancement in a system of a dielectric nanoparticl...
International audienceThe illumination of plasmonic mesostructures produces high confinement of ligh...
Abstract — The illumination of a dimer metallic nanostructure is known to produce an in-tense source...
Multiphysics simulation of light-matter interaction, induced temperature and dilation in nanostructu...
Plasmonic optical tweezers and thermophoresis are promising tools for nanomaterial manipulation. Whe...
Plasmonic structures are renowned for their capability to efficiently convert light into heat at the...
(1) Background: The ability of metal nanoparticles to carry other molecules and their electromagneti...
Metallic nanostructures supporting localized surface plasmon resonances have the potential to both g...
In this dissertation, the nanoantenna is used for the application of optical limiting. The strong lo...
La simulation multiphysique de l'interaction rayonnement-matière, des effets thermiques et mécanique...
In plasmonics, the accurate computation of the electromagnetic field enhancement is necessary in det...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
2013-04-16In this thesis, plasmonic properties of metal nanostructures are investigated by electroma...
The generation of the localized surface plasmon resonance (LSPR) on the surface of plasmonic structu...
A novel and easy approach to implement is developed to analyze the degree of convergence, confinemen...
We simulate and discuss the local electric-field enhancement in a system of a dielectric nanoparticl...