English

Radiation rebound and Quantum Splash in Electron-Laser Collision

Accelerator Physics 2019-09-25 v2 Plasma Physics

Abstract

The radiation reaction (RR) is expected to play a critical role in light-matter interactions at extreme intensity. Utilizing the theoretical analyses and three-dimensional (3D) numerical simulations, we demonstrate that electron reflection, induced by the RR in a head-on collision with an intense laser pulse, can provide pronounced signatures to discern the classical and quantum RR. In the classical regime, there is a precipitous threshold of laser intensity to achieve the whole electron bunch rebound. However, this threshold becomes a gradual transition in the quantum regime, where the electron bunch is quasi-isotropically scattered by the laser pulse and this process resembles a water splash. Leveraged on the derived dependence of classical radiation rebound on the parameters of laser pulses and electron bunches, a practical detecting method is proposed to distinguish the quantum discrete recoil and classical continuous RR force.

Keywords

Cite

@article{arxiv.1901.07965,
  title  = {Radiation rebound and Quantum Splash in Electron-Laser Collision},
  author = {Z. Gong and R. H. Hu and J. Q. Yu and Y. R. Shou and A. V. Arefiev and X. Q. Yan},
  journal= {arXiv preprint arXiv:1901.07965},
  year   = {2019}
}

Comments

8 pages, 4 figures

R2 v1 2026-06-23T07:19:55.217Z