activity
20182022
most citedEfficient start-to-end 3D envelope modeling for two-stage laser wakefield acceleration experiments

16 citations · 16 across the 2 of their papers we have counts for

collaborators

5 papers

cs.DC2022

A Task Programming Implementation for the Particle in Cell Code Smilei

Francesco Massimo, Mathieu Lobet, Julien Derouillat +5

An implementation of the electromagnetic Particle in Cell loop in the code Smilei using task programming is presented. Through OpenMP, the macro-particles operations are formulated…

physics.plasm-ph2021

Accurate electron beam phase-space theory for ionisation injection schemes driven by laser pulses

Paolo Tomassini, Francesco Massimo, Luca Labate +1

After the introduction of the ionization-injection scheme in Laser Wake Field Acceleration and of related high-quality electron beam generation methods as two-color or the Resonant…

physics.comp-ph2020

Azimuthal decomposition study of a realistic laser profile for efficient modeling of Laser WakeField Acceleration

Imen Zemzemi, Francesco Massimo, Arnaud Beck

The advent of ultra short high intensity lasers has paved the way to new and promising, yet challenging, areas of research in the laser-plasma interaction physics. The success of c…

physics.plasm-ph201916 cited

Efficient start-to-end 3D envelope modeling for two-stage laser wakefield acceleration experiments

Francesco Massimo, Arnaud Beck, Julien Dérouillat +5

Three dimensional Particle in Cell simulations of Laser Wakefield Acceleration require a considerable amount of resources but are necessary to have realistic predictions and to des…

physics.comp-ph2018

Adaptive SIMD optimizations in particle-in-cell codes with fine-grain particle sorting

Arnaud Beck, Julien Dérouillat, Mathieu Lobet +6

Particle-In-Cell (PIC) codes are broadly applied to the kinetic simulation of plasmas, from laser-matter interaction to astrophysics. Their heavy simulation cost can be mitigated b…