International audienceInvestigation of laser matter interaction with electromagnetic codes requires to implement sources for the electromagnetic fields. A way to do so is to prescribe the fields at the numerical box boundaries in order to achieve the desired fields inside the numerical box. Here we show that the often used paraxial approximation can lead to unexpected field profiles with strong impact on the laser matter interaction results. We propose an efficient numerical algorithm to compute the required laser boundary conditions consistent with the Maxwell's equations for arbitrarily shaped, tightly focused laser pulses
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
A customized finite-difference field solver for the particle-in-cell (PIC) algorithm that provides h...
We present a class of exact nonstationary solutions of Maxwell equations in vacuum from dipole pulse...
Investigation of laser matter interaction with electromagnetic codes requires to implement sources f...
International audienceWe propose an algorithm to introduce arbitrarily shaped laser pulses into elec...
journal_title: Laser Physics article_type: paper article_title: On beam models and their paraxial ap...
The intensity peak of a "flying focus" travels at a programmable velocity over many Rayleigh ranges ...
We discuss a class of exact finite energy solutions to the vacuum source-free Maxwell field equation...
Fully analytic expressions, for the electric and magnetic fields of an ultrashort and tightly focuse...
In order to get the fusion of small capsules containing a deuterium-tritium nuclear fuel, ...
When a pulsed, few-cycle electromagnetic wave is focused by optics with f-number smaller than two, t...
The analytical solution for a monochromatic focused laser beam was recently published [Opt. Lett. 31...
Analytic expressions for the electromagnetic fields of an ultrashort, tightly focused, linearly pola...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
International audienceWe analytically and numerically investigate the propagation of ultrashort tigh...
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
A customized finite-difference field solver for the particle-in-cell (PIC) algorithm that provides h...
We present a class of exact nonstationary solutions of Maxwell equations in vacuum from dipole pulse...
Investigation of laser matter interaction with electromagnetic codes requires to implement sources f...
International audienceWe propose an algorithm to introduce arbitrarily shaped laser pulses into elec...
journal_title: Laser Physics article_type: paper article_title: On beam models and their paraxial ap...
The intensity peak of a "flying focus" travels at a programmable velocity over many Rayleigh ranges ...
We discuss a class of exact finite energy solutions to the vacuum source-free Maxwell field equation...
Fully analytic expressions, for the electric and magnetic fields of an ultrashort and tightly focuse...
In order to get the fusion of small capsules containing a deuterium-tritium nuclear fuel, ...
When a pulsed, few-cycle electromagnetic wave is focused by optics with f-number smaller than two, t...
The analytical solution for a monochromatic focused laser beam was recently published [Opt. Lett. 31...
Analytic expressions for the electromagnetic fields of an ultrashort, tightly focused, linearly pola...
We analytically and numerically investigate the propagation of ultrashort tightly focused laser puls...
International audienceWe analytically and numerically investigate the propagation of ultrashort tigh...
International audienceLinearly polarized Gaussian beams, under the slowly varying envelope approxima...
A customized finite-difference field solver for the particle-in-cell (PIC) algorithm that provides h...
We present a class of exact nonstationary solutions of Maxwell equations in vacuum from dipole pulse...