arXiv · 1505.08016
MeV femtosecond electron pulses from direct-field acceleration in low density atomic gases
Abstract
Using three-dimensional particle-in-cell simulations, we show that few-MeV electrons can be produced by focusing tightly few-cycle radially-polarized laser pulses in a low-density atomic gas. In particular, it is observed that for the few-TW laser power needed to reach relativistic electron energies, longitudinal attosecond microbunching occurs naturally, resulting in femtosecond structures with high-contrast attosecond density modulations. The three-dimensional particle-in-cell simulations show that in the relativistic regime the leading pulse of these attosecond substructures survives to propagation over extended distances, suggesting that it could be delivered to a distant target, with the help of a properly designed transport beamline.
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Charles Varin, Vincent Marceau, Pascal Hogan-Lamarre, Thomas Fennel, Michel Piché, Thomas Brabec. 2015-05-29. MeV femtosecond electron pulses from direct-field acceleration in low density atomic gases. https://doi.org/10.1088/0953-4075/49/2/024001
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