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physics.plasm-ph2024
Compression of high-power laser pulse leads to increase of electron acceleration efficiency
O. E. Vais, M. G. Lobok, V. Yu. Bychenkov
Propagation of ultrarelativistically intense laser pulse in a self-trapping mode in a near critical density plasma makes it possible to produce electron bunches of extreme paramete…
physics.plasm-ph2024
Laser-triggered THz emission from near critical density targets
V. Yu. Bychenkov, A. V. Brantov, M. G. Lobok +1
Femtosecond laser pulse propagation in a relativistic self-trapping regime (RST) in a near-critical density plasma makes it possible to maximize the total charge of the acceleratin…
physics.plasm-ph2019
Generation of high-charge electron beam in a subcritical-density plasma through laser pulse self-trapping
V. Yu. Bychenkov, M. G. Lobok, V. F. Kovalev +1
To maximize the charge of a high-energy electron beam accelerated by an ultra-intense laser pulse propagating in a subcritical plasma, the pulse length should be longer than both t…