An externally applied longitudinal magnetic field was found to enhance the particle trapping in the laser wakefield acceleration. When a static magnetic field of a few tens of tesla is applied in parallel with the propagation direction of a driving laser pulse, it is shown from two-dimensional particle-in-cell simulations that total charge of the trapped beam and its maximum energy increase. The analysis of electron trajectories strongly suggests that the enhanced trapping originates from the suppression of the transverse motion by the magnetic field. The enhanced trapping by the magnetic field was observed consistently for various values of the plasma density, the amplitude of the laser pulse and pulse spot size.close111
The trapping of thermal electrons in a nonlinear plasma wave of arbitrary phase velocity is investi...
The paper presents a scheme of vacuum electron acceleration due to tightly focused linearly polarize...
Energetic electron acceleration processes in a plasma hollow tube irradiated by an ultraintense lase...
A one-dimensional numerical model to study the evolution of longitudinal electrostatic wakefields, g...
A laser-driven azimuthal plasma magnetic field is known to facilitate electron energy gain from the ...
We investigate the parameters of accelerated electron bunch in laser wakefield acceleration (LWFA), ...
The effect of an external transverse magnetic field on ionization injection of electrons in a laser ...
Experimental studies of laser-driven acceleration of charged particles, in particular electrons and ...
A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly...
A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly...
The combined role of an additional long-wavelength electromagnetic wave and a magnetic field on lase...
Laser-induced acceleration of an electron injected initially at an angle to the direction of a circu...
WOS:000291093600006The use of an external transverse magnetic field to trigger and to control electr...
Abstract- In vacuum plasma generated by laser ablation of metallic targets (Cu and Ta) was investiga...
International audienceWe report on a study on controlled trapping of electrons, by field ionization ...
The trapping of thermal electrons in a nonlinear plasma wave of arbitrary phase velocity is investi...
The paper presents a scheme of vacuum electron acceleration due to tightly focused linearly polarize...
Energetic electron acceleration processes in a plasma hollow tube irradiated by an ultraintense lase...
A one-dimensional numerical model to study the evolution of longitudinal electrostatic wakefields, g...
A laser-driven azimuthal plasma magnetic field is known to facilitate electron energy gain from the ...
We investigate the parameters of accelerated electron bunch in laser wakefield acceleration (LWFA), ...
The effect of an external transverse magnetic field on ionization injection of electrons in a laser ...
Experimental studies of laser-driven acceleration of charged particles, in particular electrons and ...
A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly...
A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly...
The combined role of an additional long-wavelength electromagnetic wave and a magnetic field on lase...
Laser-induced acceleration of an electron injected initially at an angle to the direction of a circu...
WOS:000291093600006The use of an external transverse magnetic field to trigger and to control electr...
Abstract- In vacuum plasma generated by laser ablation of metallic targets (Cu and Ta) was investiga...
International audienceWe report on a study on controlled trapping of electrons, by field ionization ...
The trapping of thermal electrons in a nonlinear plasma wave of arbitrary phase velocity is investi...
The paper presents a scheme of vacuum electron acceleration due to tightly focused linearly polarize...
Energetic electron acceleration processes in a plasma hollow tube irradiated by an ultraintense lase...