Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate laser pulses at the power frontier. They compress long pulses by transferring energy to a shorter pulse via the Raman or Brillouin instabilities.We present an extensive kinetic numerical study of the three-dimensional parameter space for the Raman case. Further particle-in-cell simulations find the optimal seed pulse parameters for experimentally relevant constraints. The high-efficiency self-similar behavior is observed only for seeds shorter than the linear Raman growth time. A test case similar to an upcoming experiment at the Laboratory for Laser Energetics is found to maintain good transverse coherence and high-energy efficiency. Effect...
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...
High power short pulse lasers are usually based on chirped pulse amplification (CPA), where a freque...
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...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Raman back-scatter from an under-dense plasma can be used to compress laser pulses, as shown by seve...
A plasma-based resonant backward Raman amplifier/compressor for high power amplification of short la...
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...
High power short pulse lasers are usually based on chirped pulse amplification (CPA), where a freque...
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...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
International audiencePower amplification and pulse compression of short-pulse laser beams by three-...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Raman back-scatter from an under-dense plasma can be used to compress laser pulses, as shown by seve...
A plasma-based resonant backward Raman amplifier/compressor for high power amplification of short la...
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...
High power short pulse lasers are usually based on chirped pulse amplification (CPA), where a freque...