English

A "lighthouse" laser-driven staged proton accelerator allowing for ultrafast angular and spectral control

Plasma Physics 2024-04-18 v1 Accelerator Physics

Abstract

Compact laser-plasma acceleration of fast ions has made great strides since its discovery over two decades ago, resulting in the current generation of high-energy (100MeV\geq 100\,\rm MeV) ultracold beams over ultrashort (1ps\leq 1\,\rm ps) durations. To unlock broader applications of these beams, we need the ability to tailor the ion energy spectrum. Here, we present a scheme that achieves precisely this by accelerating protons in a "lighthouse" fashion, whereby the highest-energy component of the beam is emitted in a narrow cone, well separated from the lower-energy components. This is made possible by a two-stage interaction in which the rear surface of the target is first set into rapid motion before the main acceleration phase. This approach offers the additional advantages of leveraging a robust sheath acceleration process in standard micron-thick targets and being optically controllable.

Keywords

Cite

@article{arxiv.2404.11321,
  title  = {A "lighthouse" laser-driven staged proton accelerator allowing for ultrafast angular and spectral control},
  author = {Vojtěch Horný and Konstantin Burdonov and Alice Fazzini and Vincent Lelasseux and Patrizio Antici and Sophia Nan Chen and Andrea Ciardi and Xavier Davoine and Emmanuel d'Humières and Laurent Gremillet and Ludovic Lecherbourg and François Mathieu and Dimitrios Papadopoulos and Weipeng Yao and Julien Fuchs},
  journal= {arXiv preprint arXiv:2404.11321},
  year   = {2024}
}

Comments

9 pages, 6 figures

R2 v1 2026-06-28T15:57:11.272Z