English

High-quality GeV-scale electron bunches with the Resonant Multi-Pulse Ionization Injection

Accelerator Physics 2018-12-26 v1 Plasma Physics

Abstract

Recently a new injection scheme for Laser Wake Field Acceleration, employing a single 100-TW-class laser system, has been proposed. In the Resonant Multi-Pulse Ionization injection (ReMPI) a resonant train of pulses drives a large amplitude plasma wave that traps electrons extracted from the plasma by further ionization of a high-Z dopant (Argon in the present paper). While the pulses of the driver train have intensity below the threshold for the dopant's ionization, the properly delayed and frequency doubled (or more) ionization pulse possesses an electric field large enough to extract electrons, though its normalized amplitude is well below unity. In this paper we will report on numerical simulations results aimed at the generation of GeV-scale bunches with normalized emittance and {\it rms} energy below 80nm×rad80\, nm \times rad and 0.5%0.5\, \%, respectively. Analytical consideration of the FEL performance for a 1.3GeV1.3\, GeV bunch will be also reported.

Keywords

Cite

@article{arxiv.1802.09838,
  title  = {High-quality GeV-scale electron bunches with the Resonant Multi-Pulse Ionization Injection},
  author = {P. Tomassini and S. De Nicola and L. Labate and P. Londrillo and R. Fedele and D. Terzani and F. Nguyen and G. Vantaggiato and L. A. Gizzi},
  journal= {arXiv preprint arXiv:1802.09838},
  year   = {2018}
}

Comments

EAAC 2017 Conference, Elba, Italy