The energy spread in laser wakefield accelerators is primarily limited by the energy chirp introduced during the injection and acceleration processes. Here, we propose the use of longitudinal density tailoring to reduce the beam chirp at the end of the accelerator. Experimental data sustained by quasi-3D particle-incell simulations show that broadband electron beams can be converted to quasimonoenergetic beams of ≤ 10% energy spread while maintaining a high charge of more than 120 pC. In the linear and quasilinear regimes of wakefield acceleration, the method could provide even lower, subpercent level, energy spread
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
We propose a scheme to minimize the energy spread of an electron beam (e-beam) in a cascaded laser w...
Plasma-based accelerators offer the possibility to drive future compact light sources and high-energ...
Plasma-based accelerators offer the possibility to drive future compact light sources and high-energ...
In this paper, we address the energy spread and slice energy spread of an externally injected electr...
International audienceIn this paper, we address the energy spread and slice energy spread of an exte...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
International audienceThe energy spread in laser wakefield accelerators is primarily limited by the ...
We propose a scheme to minimize the energy spread of an electron beam (e-beam) in a cascaded laser w...
Plasma-based accelerators offer the possibility to drive future compact light sources and high-energ...
Plasma-based accelerators offer the possibility to drive future compact light sources and high-energ...
In this paper, we address the energy spread and slice energy spread of an externally injected electr...
International audienceIn this paper, we address the energy spread and slice energy spread of an exte...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
Next-generation plasma-based accelerators can push electron bunches to gigaelectronvolt energies wi...
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...