Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produce picosecond pulses of petawatt power. A key challenge is preservation of the quality of the amplified pulse, which requires control of parasitic instabilities that accompany the amplification process. At high plasma densities ( >cr /4), ponderomotive filamentation has been identified as the biggest threat to the integrity of the amplifying pulse. It has therefore been proposed to perform Brillouin scattering at densities below ncr/4 to reduce the influence of filamentation. However, parasitic Raman scattering can become a problem at such densities, contrary to densities above ncr/4 where it is forbidden. In this paper, we investigate the in...
The use of plasma as an amplification medium is currently discussed because it can overcome current ...
High amplitude electric fields (∼ GV/m) can be produced by stimulated forward Raman scattering and e...
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma paramete...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Authors KH, RT, DCS, RAC, RB were supported by EPSRC grant EP/G04239X/1.We report on particle in cel...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
The use of plasma as an amplification medium is currently discussed because it can overcome current ...
High amplitude electric fields (∼ GV/m) can be produced by stimulated forward Raman scattering and e...
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma paramete...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Authors KH, RT, DCS, RAC, RB were supported by EPSRC grant EP/G04239X/1.We report on particle in cel...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
The use of plasma as an amplification medium is currently discussed because it can overcome current ...
High amplitude electric fields (∼ GV/m) can be produced by stimulated forward Raman scattering and e...
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....