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Updated: Jun 20, 2025

Direct Imaging of Laser-driven Ultrafast Molecular Rotation
Published on: February 4, 2017
Direct laser acceleration: A model for the electron injection from the walls of a cylindrical guiding structure
P Valenta1, D Maslarova2,3, R Babjak2,4
1<a href="https://ror.org/00yzpcc69">ELI Beamlines Facility</a>, Extreme Light Infrastructure ERIC, 252 41 Dolní Břežany, Czech Republic.
Abstract:
We use analytical methods and particle-in-cell simulation to investigate the origin of electrons accelerated by the process of direct laser acceleration driven by high-power laser pulses in preformed narrow cylindrical plasma channels. The simulation shows that the majority of accelerated electrons are originally located along the interface between the channel wall and the channel interior. The analytical model based on the electron hydrodynamics illustrates the underlying physical mechanism of the release of electrons from the channel wall when irradiated by an intense laser, the subsequent electron dynamics, and the corresponding evolution of the channel density profile. The quantitative predictions of the total charge of released electrons and the average electron density inside the channel are validated by comparison with the simulation results.

