International audienceA short-pulse laser beat wave scheme for advanced particle accelerator applications is examined. A short, intense (3-ps, >10^18-W cm^-2) two-frequency laser pulse is produced by use of a modified chirped-pulse amplification scheme and is shown to produce relativistic plasma waves during interactions with low-density plasmas. The generation of plasma waves was observed by measurement of forward Raman scattering. Resonance was found to occur at an electron density many times that expected, owing to ponderomotive displacement of plasma within the focal region
International audienceThe interaction of intense laser pulses (power>30 TW) with underdense plasmas ...
With the advent of high-intensity short-pulse laser technology, focused laser intensity exceeding 10...
The physics of plasma-based accelerators driven by short-pulse lasers is reviewed. This includes the...
International audienceA short-pulse laser beat wave scheme for advanced particle accelerator applica...
International audienceExperiments to examine the generation of relativistic plasma waves via a high-...
This thesis deals with the interaction of short-pulse lasers with plasmas to accelerate electrons to...
In the Plasma Beat Wave Accelerator, acceleration is achieved by a longitudinal electrostatic field ...
Experimental evidence for the acceleration of electrons in a relativistic plasma wave generated by R...
Experimental evidence for the acceleration of electrons in a relativistic plasma wave generated by R...
International audienceELECTRONS in a plasma undergo collective wave-like oscillations near the plasm...
Laser plasma electron accelerators require a longitudinal electric field of the plasma wave oscillat...
Generation of large amplitude plasma waves using high-power lasers in either the wakefield or beat-w...
An approach to compressing high-power laser beams in plasmas via coherent Raman sideband generation ...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
International audienceThe interaction of intense laser pulses (power>30 TW) with underdense plasmas ...
With the advent of high-intensity short-pulse laser technology, focused laser intensity exceeding 10...
The physics of plasma-based accelerators driven by short-pulse lasers is reviewed. This includes the...
International audienceA short-pulse laser beat wave scheme for advanced particle accelerator applica...
International audienceExperiments to examine the generation of relativistic plasma waves via a high-...
This thesis deals with the interaction of short-pulse lasers with plasmas to accelerate electrons to...
In the Plasma Beat Wave Accelerator, acceleration is achieved by a longitudinal electrostatic field ...
Experimental evidence for the acceleration of electrons in a relativistic plasma wave generated by R...
Experimental evidence for the acceleration of electrons in a relativistic plasma wave generated by R...
International audienceELECTRONS in a plasma undergo collective wave-like oscillations near the plasm...
Laser plasma electron accelerators require a longitudinal electric field of the plasma wave oscillat...
Generation of large amplitude plasma waves using high-power lasers in either the wakefield or beat-w...
An approach to compressing high-power laser beams in plasmas via coherent Raman sideband generation ...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
International audienceThe interaction of intense laser pulses (power>30 TW) with underdense plasmas ...
With the advent of high-intensity short-pulse laser technology, focused laser intensity exceeding 10...
The physics of plasma-based accelerators driven by short-pulse lasers is reviewed. This includes the...