The effect of an external transverse magnetic field on ionization injection of electrons in a laser wakefield accelerator (LWFA) is investigated by theoretical analysis and particle-in-cell simulations. On application of a few tens of Tesla magnetic field, both the electron trapping condition and the wakefield structure changes significantly such that injection occurs over a shorter distance and at an enhanced rate. Furthermore, beam loading is compensated for, as a result of the intrinsic trapezoidal-shaped longitudinal charge density profile of injected electrons. The nonlinear ionization injection and consequent compensation of beam loading lead to a reduction in the energy spread and an enhancement of both the charge and final peak ener...
Laser-driven plasma wakefields are structures that can sustain large electric fields and offer a pro...
A plasma wakefield accelerator (PWFA) uses a plasma wave (a wake) to accelerate electrons at a gradi...
Laser Wakefield Acceleration (LWFA) has the potential to become the next-generation accelerationtech...
The effect of an external transverse magnetic field on ionization injection of electrons in a laser ...
An externally applied longitudinal magnetic field was found to enhance the particle trapping in the ...
In this dissertation, the direct laser acceleration (DLA) of ionization-injected electrons in a lase...
In this chapter we describe and discuss a special technique in laser wakefield acceleration (LWFA): ...
WOS:000291093600006The use of an external transverse magnetic field to trigger and to control electr...
In this paper, the influence of initial momentum and the injection angle of electron in to the magne...
We investigate the parameters of accelerated electron bunch in laser wakefield acceleration (LWFA), ...
A one-dimensional numerical model to study the evolution of longitudinal electrostatic wakefields, g...
The effect of laser polarization on the laser wakefield acceleration (LWFA) of electrons has been in...
The dynamics of electron acceleration driven by laser wakefield is studied in detail using the parti...
In laser-driven wakefield, ionization induced injection is an efficient way to inject electrons in t...
International audienceWe report on a study on controlled trapping of electrons, by field ionization ...
Laser-driven plasma wakefields are structures that can sustain large electric fields and offer a pro...
A plasma wakefield accelerator (PWFA) uses a plasma wave (a wake) to accelerate electrons at a gradi...
Laser Wakefield Acceleration (LWFA) has the potential to become the next-generation accelerationtech...
The effect of an external transverse magnetic field on ionization injection of electrons in a laser ...
An externally applied longitudinal magnetic field was found to enhance the particle trapping in the ...
In this dissertation, the direct laser acceleration (DLA) of ionization-injected electrons in a lase...
In this chapter we describe and discuss a special technique in laser wakefield acceleration (LWFA): ...
WOS:000291093600006The use of an external transverse magnetic field to trigger and to control electr...
In this paper, the influence of initial momentum and the injection angle of electron in to the magne...
We investigate the parameters of accelerated electron bunch in laser wakefield acceleration (LWFA), ...
A one-dimensional numerical model to study the evolution of longitudinal electrostatic wakefields, g...
The effect of laser polarization on the laser wakefield acceleration (LWFA) of electrons has been in...
The dynamics of electron acceleration driven by laser wakefield is studied in detail using the parti...
In laser-driven wakefield, ionization induced injection is an efficient way to inject electrons in t...
International audienceWe report on a study on controlled trapping of electrons, by field ionization ...
Laser-driven plasma wakefields are structures that can sustain large electric fields and offer a pro...
A plasma wakefield accelerator (PWFA) uses a plasma wave (a wake) to accelerate electrons at a gradi...
Laser Wakefield Acceleration (LWFA) has the potential to become the next-generation accelerationtech...