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Updated: May 21, 2025

Femtosecond Laser Filaments for Use in Sub-Diffraction-Limited Imaging and Remote Sensing
Published on: April 25, 2019
Femtosecond laser-induced plasma filaments for beam-driven plasma wakefield acceleration
M Galletti1,2,3, L Crincoli4,5, R Pompili4
1Università di Roma Tor Vergata, Department of Physics, Via Ricerca Scientifica 1, 00133 Rome, Italy.
Abstract:
We describe the generation of plasma filaments for application in plasma-based particle accelerators. The complete characterization of a plasma filament generated by a low-energy self-guided femtosecond laser pulse is studied experimentally and theoretically in a low-pressure nitrogen gas environment. For this purpose, we adopted a spectroscopic methodology to measure the plasma density and electron temperature. In addition to this, we also employed a side-imaging technique to retrieve the plasma column sizes (length and diameter). The measurements show the stable generation of a ≈4-cm-long plasma filament with ≈300µm diameter. The peak plasma density and temperature are n_{e}≈10^{16}cm^{-3} and T_{e}≈1.3eV, respectively, with a decay time of approximately 8 ns. We show that the experimental results are in agreement with numerical simulations in terms of filament size and density decay time.

