Raman back-scatter from an under-dense plasma can be used to compress laser pulses, as shown by several previous experiments in the optical regime. A short seed pulse counter-propagates with a longer pump pulse and energy is transferred to the shorter pulse via stimulated Raman scattering. The robustness of the scheme to non-ideal plasma density conditions is demonstrated through particle-in-cell simulations. The scale invariance of the scheme ensures that compression of XUV pulses from a free electron laser is also possible, as demonstrated by further simulations. The output is as short as 300 as, with energy typical of fourth generation sources
International audienceInteraction of a high-intensity short laser pulse with near-critical plasmas a...
Backward Raman compression in plasma is based on a 3-wave resonant interaction, which includes two- ...
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...
Raman back-scatter from an under-dense plasma can be used to compress laser pulses, as shown by seve...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
The compression of a laser pulse by amplification of an ultra short pulse beam which seeds the stimu...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
The characteristics of pulse compression during the laser pulse amplification using a counter-propag...
Abstract—Raman amplification of a short laser pulse by a counter-propagating pump in a plasma is sim...
We present analysis and simulations of electron trapping effect in the Raman pulse amplification in ...
State of the art X-ray Free Electron Laser facilities currently provide the brightest X-ray pulses a...
International audienceWe present a scheme for amplifying an extreme-ultraviolet (XUV) seed isolated ...
The characteristics of pulse compression during the laser pulse amplification using two counter-prop...
State of the art X-ray Free Electron Laser facilities currently provide the brightest X-ray pulses a...
International audienceInteraction of a high-intensity short laser pulse with near-critical plasmas a...
Backward Raman compression in plasma is based on a 3-wave resonant interaction, which includes two- ...
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...
Raman back-scatter from an under-dense plasma can be used to compress laser pulses, as shown by seve...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
The compression of a laser pulse by amplification of an ultra short pulse beam which seeds the stimu...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
The characteristics of pulse compression during the laser pulse amplification using a counter-propag...
Abstract—Raman amplification of a short laser pulse by a counter-propagating pump in a plasma is sim...
We present analysis and simulations of electron trapping effect in the Raman pulse amplification in ...
State of the art X-ray Free Electron Laser facilities currently provide the brightest X-ray pulses a...
International audienceWe present a scheme for amplifying an extreme-ultraviolet (XUV) seed isolated ...
The characteristics of pulse compression during the laser pulse amplification using two counter-prop...
State of the art X-ray Free Electron Laser facilities currently provide the brightest X-ray pulses a...
International audienceInteraction of a high-intensity short laser pulse with near-critical plasmas a...
Backward Raman compression in plasma is based on a 3-wave resonant interaction, which includes two- ...
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...