Laser-plasma accelerators outperform current radio frequency technology in acceleration strength by orders of magnitude. Yet, enabling them to deliver competitive beam quality for demanding applications, particularly in terms of energy spread and stability, remains a major challenge. In this Letter, we propose to combine bunch decompression and active plasma dechirping for drastically improving the energy profile and stability of beams from laser-plasma accelerators. Realistic start-to-end simulations demonstrate the potential of these postacceleration phase-space manipulations for simultaneously reducing an initial energy spread and energy jitter of ∼1–2% to ≲0.1%, closing the beam-quality gap to conventional acceleration schemes
Plasma wakefields driven by high power lasers or relativistic particle beams can be orders of magnit...
In this paper we discuss design considerations and beam dynamics challenges associated with laser-dr...
We propose a scheme to minimize the energy spread of an electron beam (e-beam) in a cascaded laser w...
Laser-plasma accelerators outperform current radiofrequency technology in acceleration strength by o...
Plasma accelerators driven by intense laser or particle beams provide gigavolt-per-meter acceleratin...
A plasma decelerating stage is investigated as a compact alternative for the disposal of high-energy...
A tunable plasma-based energy dechirper has been developed at FLASHForward to remove the correlated ...
A tunable plasma-based energy dechirper has been developed at FLASHForward to remove thecorrelated e...
Plasma wakefields driven by high power lasers or relativistic particle beams can be orders of magnit...
A recent study on a high energy accelerator system which involves multistage laser wakefield acceler...
Laser-plasma accelerators (LPAs) are capable of accelerating charged particles to very high energies...
An important limit for energy gain in laser-plasma wakefield accelerators is the dephasing length, a...
International audienceThe energy gain in laser wakefield accelerators is limited by dephasing betwee...
In future high-energy accelerators such as the International Linear Collider (ILC) the beam energy c...
The beam charge in laser-plasma accelerators is about 2 orders of magnitude lower than in convention...
Plasma wakefields driven by high power lasers or relativistic particle beams can be orders of magnit...
In this paper we discuss design considerations and beam dynamics challenges associated with laser-dr...
We propose a scheme to minimize the energy spread of an electron beam (e-beam) in a cascaded laser w...
Laser-plasma accelerators outperform current radiofrequency technology in acceleration strength by o...
Plasma accelerators driven by intense laser or particle beams provide gigavolt-per-meter acceleratin...
A plasma decelerating stage is investigated as a compact alternative for the disposal of high-energy...
A tunable plasma-based energy dechirper has been developed at FLASHForward to remove the correlated ...
A tunable plasma-based energy dechirper has been developed at FLASHForward to remove thecorrelated e...
Plasma wakefields driven by high power lasers or relativistic particle beams can be orders of magnit...
A recent study on a high energy accelerator system which involves multistage laser wakefield acceler...
Laser-plasma accelerators (LPAs) are capable of accelerating charged particles to very high energies...
An important limit for energy gain in laser-plasma wakefield accelerators is the dephasing length, a...
International audienceThe energy gain in laser wakefield accelerators is limited by dephasing betwee...
In future high-energy accelerators such as the International Linear Collider (ILC) the beam energy c...
The beam charge in laser-plasma accelerators is about 2 orders of magnitude lower than in convention...
Plasma wakefields driven by high power lasers or relativistic particle beams can be orders of magnit...
In this paper we discuss design considerations and beam dynamics challenges associated with laser-dr...
We propose a scheme to minimize the energy spread of an electron beam (e-beam) in a cascaded laser w...