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Updated: May 29, 2025

Investigation of Early Plasma Evolution Induced by Ultrashort Laser Pulses
Published on: July 2, 2012
Optical Imaging of Laser-Driven Fast Electron Weibel-like Filamentation in Overcritical Density Plasma
N P Dover1, O Tresca2, N Cook3,4
1Imperial College London, The John Adams Institute for Accelerator Science, Blackett Laboratory, SW7 2BZ, United Kingdom.
Abstract:
We report on the measurement of filamented transport of laser-generated fast electron beams in near-critical density plasma. A relativistic intensity long-wave-infrared laser irradiated a hydrodynamically shaped helium gas flow at an electron density n_{e}≃10^{25} m^{-3}, generating a large flux of fast electrons that propagated beyond the critical surface. The beam-to-background electron density ratio was sufficiently high to drive growth of Weibel-like filamentation, which was measured by optical probing to extend up to 800 μm with radii ∼10 μm. Particle-in-cell simulations reproduce the main features of the filamentation generation, suggesting that collisionless processes are dominant in these interactions. Expansion of the filaments after formation infers a fast electron heated plasma temperature ∼400 eV in the overcritical density plasma.

