Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach multi-PW powers in compact laser systems. However, no significant plasma-based Raman amplification of a laser pulse beyond 0.1 TW has been achieved in nearly 20 years, and only one report of Brillouin amplification beyond 1 TW. In this paper, we reveal novel non-linear criteria for the initial seed pulse that will finally open the door to efficient Raman and Brillouin amplification to petawatt powers and Joule-level energies. We show that the triple product of the coupling constant Γ , seed pulse duration τ and seed pulse amplitude a for the Raman seed pulse (or a2/3 for Brillouin) must exceed a specific minimum threshold for efficient amplificat...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Higher intensity of strong-coupling stimulated Brillouin scattering (SC-SBS) amplification is achiev...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
The authors acknowledge financial support from STFC, from EPSRC under Grant No. EP/R004773/1, from t...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Higher intensity of strong-coupling stimulated Brillouin scattering (SC-SBS) amplification is achiev...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
The authors acknowledge financial support from STFC, from EPSRC under Grant No. EP/R004773/1, from t...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Higher intensity of strong-coupling stimulated Brillouin scattering (SC-SBS) amplification is achiev...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...