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 amplific...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
The intensity of a subpicosecond laser pulse was amplified by a factor of up to 1000 using the Raman...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma paramete...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Higher intensity of strong-coupling stimulated Brillouin scattering (SC-SBS) amplification is achiev...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
The plasma Raman instability can efficiently compress a nanosecond long high-power laser pulse to su...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
The intensity of a subpicosecond laser pulse was amplified by a factor of up to 1000 using the Raman...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma paramete...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Higher intensity of strong-coupling stimulated Brillouin scattering (SC-SBS) amplification is achiev...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
The plasma Raman instability can efficiently compress a nanosecond long high-power laser pulse to su...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Brillouin amplification of laser pulses in plasma has been shown to be a promising approach to produ...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
The intensity of a subpicosecond laser pulse was amplified by a factor of up to 1000 using the Raman...