We propose a numerical method, based on surface integral equations (SIE), for evaluating the second harmonic (SH) scattering by metal nanoparticles (NPs) of arbitrary shape, considering both nonlocal-bulk and local-surface SH sources, induced by the electromagnetic field at the fundamental frequency. We demonstrate that the contribution of the nonlocal-bulk sources can be taken into account through equivalent surface electric and magnetic currents. We numerically solve the SIE problem by using the Galerkin method and the Rao-Wilton-Glisson basis functions in the framework of the distribution theory. The accuracy of the proposed method is verified by comparing with the SH-Mie analytical solution. As an example of a complex-shaped particle, w...
The silencing of the second harmonic generation process from plasmonic nanostructures corresponds to...
This work is devoted to the study of the second harmonic scattering from spherical metallicnanoparti...
In this paper, we introduce a transfer matrix method (TMM) for efficient calculation of second-harmo...
We propose a numerical method, based on surface integral equations (SIE), for evaluating the second ...
Metals are centrosymmetric materials which only posse local surface second-harmonic (SH) nonlinearit...
We present the frequency-domain boundary element formulation for solving surface second-harmonic gen...
Recent advances in the fabrication of nanoscale structures have enabled the production of almost arb...
Poster Session 1Due to symmetry breaking at surface and plasmonic enhancement, second-harmonic gener...
A detailed computational study of the wavelength-dependent efficiency of optical second-harmonic gen...
We present a full-wave analytical solution for the problem of second-harmonic generation from spheri...
Numerical formulations based on surface integral equations (SIEs) provide an accurate and efficient ...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
The full wave surface integral equation computation of the second harmonic generation (SHG) dynamics...
The full wave surface integral equation computation of the second harmonic generation (SHG) dynamics...
Ce travail de thèse a porté sur l’étude de la génération de second harmonique par lesnanoparticules ...
The silencing of the second harmonic generation process from plasmonic nanostructures corresponds to...
This work is devoted to the study of the second harmonic scattering from spherical metallicnanoparti...
In this paper, we introduce a transfer matrix method (TMM) for efficient calculation of second-harmo...
We propose a numerical method, based on surface integral equations (SIE), for evaluating the second ...
Metals are centrosymmetric materials which only posse local surface second-harmonic (SH) nonlinearit...
We present the frequency-domain boundary element formulation for solving surface second-harmonic gen...
Recent advances in the fabrication of nanoscale structures have enabled the production of almost arb...
Poster Session 1Due to symmetry breaking at surface and plasmonic enhancement, second-harmonic gener...
A detailed computational study of the wavelength-dependent efficiency of optical second-harmonic gen...
We present a full-wave analytical solution for the problem of second-harmonic generation from spheri...
Numerical formulations based on surface integral equations (SIEs) provide an accurate and efficient ...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
The full wave surface integral equation computation of the second harmonic generation (SHG) dynamics...
The full wave surface integral equation computation of the second harmonic generation (SHG) dynamics...
Ce travail de thèse a porté sur l’étude de la génération de second harmonique par lesnanoparticules ...
The silencing of the second harmonic generation process from plasmonic nanostructures corresponds to...
This work is devoted to the study of the second harmonic scattering from spherical metallicnanoparti...
In this paper, we introduce a transfer matrix method (TMM) for efficient calculation of second-harmo...