Direct observation of plasma waves and dynamics induced by laser-accelerated electron beams
M. F. Gilljohann, H. Ding, A. D\"opp, J. Goetzfried, S. Schindler, G., Schilling, S. Corde, A. Debus, T. Heinemann, B. Hidding, S. M. Hooker, A., Irman, O. Kononenko, T. Kurz, A. Martinez de la Ossa, U. Schramm, and S., Karsch

TL;DR
This study demonstrates the generation and observation of plasma wakefields driven by laser-accelerated electron beams, revealing new ion dynamics and enabling scalable, compact plasma acceleration techniques.
Contribution
First experimental observation of plasma wakefield generation using laser-accelerated electron beams at high density with femtosecond resolution.
Findings
Captured plasma wave dynamics with femtosecond resolution.
Observed a new transverse ion motion in the plasma trail.
Showed scalability of high-density results to low-density systems.
Abstract
Plasma wakefield acceleration (PWFA) is a novel acceleration technique with promising prospects for both particle colliders and light sources. However, PWFA research has so far been limited to a few large-scale accelerator facilities world-wide. Here, we present first results on plasma wakefield generation using electron beams accelerated with a 100-TW-class Ti:Sa laser. Due to their ultrashort duration and high charge density, the laser-accelerated electron bunches are suitable to drive plasma waves at electron densities in the order of cm. We capture the beam-induced plasma dynamics with femtosecond resolution using few-cycle optical probing and, in addition to the plasma wave itself, we observe a distinctive transverse ion motion in its trail. This previously unobserved phenomenon can be explained by the ponderomotive force of the plasma wave acting on the ions,…
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