most citedDemonstration of relativistic electron beam focusing by a laser-plasma lens

89 citations · 189 across the 4 of their papers we have counts for

collaborators

7 papers

physics.acc-ph20241 cited

Report on the Advanced Linear Collider Study Group (ALEGRO) Workshop 2024

J. Vieira, B. Cros, P. Muggli +40

The workshop focused on the application of ANAs to particle physics keeping in mind the ultimate goal of a collider at the energy frontier (10\,TeV, e/e, e/e, or $γ…

physics.optics20241 cited

LASY: LAser manipulations made eaSY

Maxence Thévenet, Igor A. Andriyash, Luca Fedeli +8

Using realistic laser profiles for simulations of laser-plasma interaction is critical to reproduce experimental measurements, but the interface between experiments and simulations…

physics.acc-ph20245 cited

Synthesizing Particle-in-Cell Simulations Through Learning and GPU Computing for Hybrid Particle Accelerator Beamlines

Ryan T. Sandberg, Remi Lehe, Chad E. Mitchell +5

Particle accelerator modeling is an important field of research and development, essential to investigating, designing and operating some of the most complex scientific devices eve…

physics.acc-ph201642 cited

Accurate modeling of plasma acceleration with arbitrary order pseudo-spectral particle-in-cell methods

Sören Jalas, Irene Dornmair, Rémi Lehe +4

Particle in Cell (PIC) simulations are a widely used tool for the investigation of both laser- and beam-driven plasma acceleration. It is a known issue that the beam quality can be…

physics.plasm-ph201646 cited

Elimination of Numerical Cherenkov Instability in flowing-plasma Particle-In-Cell simulations by using Galilean coordinates

Remi Lehe, Manuel Kirchen, Brendan B. Godfrey +2

Particle-In-Cell (PIC) simulations of relativistic flowing plasmas are of key interest to several fields of physics (including e.g. laser-wakefield acceleration, when viewed in a L…

physics.plasm-ph201489 cited

Demonstration of relativistic electron beam focusing by a laser-plasma lens

Cédric Thaury, Emilien Guillaume, Andreas Döpp +11

Laser-plasma technology promises a drastic reduction of the size of high energy electron accelerators. It could make free electron lasers available to a broad scientific community,…