We propose a novel approach to compute the field scattered by a particle in the near-zone, in the framework of the transition matrix formulation. This method is based on the expansion of the total near-field in terms of discrete sources vector spherical wave functions and turns out to be particularly effective to model strongly elongated or flattened particles with high permittivity. The performances are evaluated on gold spheroids with several aspect ratios. This method results very useful to understand the complex behavior of enhanced plasmon fields in resonant metallic nanostructures
International audienceScattering of a plane wave by a two-dimensional particle (i.e., a rod) below a...
In this article, we present a T-matrix method for numerical computation of second-harmonic generatio...
International audienceA simple hand calculation method based on group theory is proposed to predict ...
We propose a novel approach to compute the field scattered by a particle in the near-zone, in the fr...
The unifying theme of this thesis is that of light scattering by particles, using computational appr...
We introduce TERMS, an open-source Fortran program to simulate near-field and far-field optical prop...
The optical near-field contribution to the total scattered intensity for a spherical metallic nanopa...
The discrete dipole approximation (DDA) is a widely used method for simulation of various optical pr...
The study of plasmon-induced electromagnetic fields is a very interesting topic for basic research a...
International audienceUsing the Green's dyad technique based on cuboidal meshing, we compute the ele...
Coupling between plasmonic nanoparticles (NPs) in NP assemblies has been investigated extensively vi...
International audienceScattering of a plane wave by a two-dimensional particle (i.e., a rod) below a...
In this article, we present a T-matrix method for numerical computation of second-harmonic generatio...
International audienceA simple hand calculation method based on group theory is proposed to predict ...
We propose a novel approach to compute the field scattered by a particle in the near-zone, in the fr...
The unifying theme of this thesis is that of light scattering by particles, using computational appr...
We introduce TERMS, an open-source Fortran program to simulate near-field and far-field optical prop...
The optical near-field contribution to the total scattered intensity for a spherical metallic nanopa...
The discrete dipole approximation (DDA) is a widely used method for simulation of various optical pr...
The study of plasmon-induced electromagnetic fields is a very interesting topic for basic research a...
International audienceUsing the Green's dyad technique based on cuboidal meshing, we compute the ele...
Coupling between plasmonic nanoparticles (NPs) in NP assemblies has been investigated extensively vi...
International audienceScattering of a plane wave by a two-dimensional particle (i.e., a rod) below a...
In this article, we present a T-matrix method for numerical computation of second-harmonic generatio...
International audienceA simple hand calculation method based on group theory is proposed to predict ...