The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is shown that damping and the shift in plasma resonance at finite temperature can alter the evolution of an amplified pulse. It is shown that pulse compression can occur which is not predicted by the cold plasma model. Although thermal effects can lead to a reduction in the efficiency of the interaction, this can be avoided by using a chirped pump. In this case these effects can be beneficial, suppressing the development of a train of pulses behind the amplified seed, as observed in the cold plasma model
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
A three-wave model has been developed to investigate the influence of wavebreaking and thermal effec...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Stimulated Raman backscattering in plasma has been suggested as a way to amplify short laser pulses ...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Raman amplification in plasma has been proposed to be a promising method of amplifying short radiati...
A critical issue in the generation of ultra-intense, ultra-short laser pulses by backward Raman scat...
A numerical code based on an eikonal formalism has been developed to simulate laser-plasma interacti...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
A plasma-based resonant backward Raman amplifier/compressor for high power amplification of short la...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
A three-wave model has been developed to investigate the influence of wavebreaking and thermal effec...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
Stimulated Raman backscattering in plasma has been suggested as a way to amplify short laser pulses ...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Raman amplification in plasma has been proposed to be a promising method of amplifying short radiati...
A critical issue in the generation of ultra-intense, ultra-short laser pulses by backward Raman scat...
A numerical code based on an eikonal formalism has been developed to simulate laser-plasma interacti...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
A plasma-based resonant backward Raman amplifier/compressor for high power amplification of short la...
Plasma amplifiers offer a route to side-step limitations on chirped pulse amplification and generate...
Backward Raman amplification (BRA) in plasma can be used for generating ultra-powerful laser pulses....
Raman backscattering (RBS) in plasma has been proposed as a way of amplifying and compressing high i...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...