The origin of electron trapping at the back of a 'bubble', which is formed when the electrons are expelled from an under-dense plasma by an intense laser pulse, is investigated using a reduced model wakefield. The subsequent acceleration and transverse oscillation produces betatron radiation. Such electromagnetic radiation emitted by trapped electron in an ionic bubble is estimated using the Lienard-Wiechert potentia
International audienceThe dynamics of ionization-induced electron injection in high density (~1.2 × ...
textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma ...
Self-injection of background electrons in plasma wakefield accelerators in the highly nonlinear bubb...
The origin of electron trapping at the back of a 'bubble', which is formed when the electrons are ex...
We performed laser wakefield electron acceleration experiments using laser powers up to 100TW in the...
Spectral analysis of radiation emitted transverse to laser propagation in laser-wakefield accelerati...
In this paper, electron trajectories are studied analytically in the rest frame of a plasma bubble u...
International audienceThe dynamics of ionization-induced electron injection in the high density (~ 1...
Some typical electrons trajectories around a bubble regime in intense laser plasma interaction are i...
The dynamics of ionization-induced electron injection in the high density (similar to 1.2 x 10(19)cm...
We present electron trapping in an ellipsoidal bubble which is not well explained by the spherical b...
A laser wakefield accelerator is shown to operate in the highly non‐linear bubble regime, following ...
A novel mechanism for injection, emittance selection, and postacceleration for laser wakefield elect...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
International audienceThe dynamics of ionization-induced electron injection in high density (~1.2 × ...
textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma ...
Self-injection of background electrons in plasma wakefield accelerators in the highly nonlinear bubb...
The origin of electron trapping at the back of a 'bubble', which is formed when the electrons are ex...
We performed laser wakefield electron acceleration experiments using laser powers up to 100TW in the...
Spectral analysis of radiation emitted transverse to laser propagation in laser-wakefield accelerati...
In this paper, electron trajectories are studied analytically in the rest frame of a plasma bubble u...
International audienceThe dynamics of ionization-induced electron injection in the high density (~ 1...
Some typical electrons trajectories around a bubble regime in intense laser plasma interaction are i...
The dynamics of ionization-induced electron injection in the high density (similar to 1.2 x 10(19)cm...
We present electron trapping in an ellipsoidal bubble which is not well explained by the spherical b...
A laser wakefield accelerator is shown to operate in the highly non‐linear bubble regime, following ...
A novel mechanism for injection, emittance selection, and postacceleration for laser wakefield elect...
A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to...
X-ray generation by many charged particles experiencing accelerations similar to those in laser wake...
International audienceThe dynamics of ionization-induced electron injection in high density (~1.2 × ...
textPlasma-based accelerators aim to efficiently generate relativistic electrons by exciting plasma ...
Self-injection of background electrons in plasma wakefield accelerators in the highly nonlinear bubb...