Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in laser-driven fusion experiments. We show that saturation can arise from nonlinearities due to coupling between the fundamental and harmonic plasma wave modes for sufficiently intense pump and seed pulses. We present a time-dependent analysis that shows that plasma wave phase shifts reach a maximum close to wavebreaking. The study contributes to a new understanding of RBS saturation for counter-propagating laser pulses
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
Stimulated Rarnarr backscattering (SRBS) is a promising concept to create ultrarintense Iaser pulses...
Stimulated Raman backscattering (SRS) has many unwanted effects in megajoule-scale inertially confin...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
A stimulated Raman scattering (SRS) is a great concern for laser fusion, causing an energy and symme...
The intensity of a subpicosecond laser pulse was amplified by a factor of up to 1000 using the Raman...
Raman backscattering (RBS) in an infinite homogeneous laser-plasma system was investigated with the ...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Pulse compression using the Raman backscatter (RBS) in plasmas was numerically investigated for the ...
The advent of laser systems based on the chirped pulse amplification (CPA) technique has allowed the...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
A numerical code based on an eikonal formalism has been developed to simulate laser-plasma interacti...
Raman backscattering (RBS) in plasma is an attractive source of intense, ultrashort laser pulses, wh...
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
Stimulated Rarnarr backscattering (SRBS) is a promising concept to create ultrarintense Iaser pulses...
Stimulated Raman backscattering (SRS) has many unwanted effects in megajoule-scale inertially confin...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
A stimulated Raman scattering (SRS) is a great concern for laser fusion, causing an energy and symme...
The intensity of a subpicosecond laser pulse was amplified by a factor of up to 1000 using the Raman...
Raman backscattering (RBS) in an infinite homogeneous laser-plasma system was investigated with the ...
Laser pulse intensities have not advanced significantly since the invention of the chirped pulse amp...
Pulse compression using the Raman backscatter (RBS) in plasmas was numerically investigated for the ...
The advent of laser systems based on the chirped pulse amplification (CPA) technique has allowed the...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
A numerical code based on an eikonal formalism has been developed to simulate laser-plasma interacti...
Raman backscattering (RBS) in plasma is an attractive source of intense, ultrashort laser pulses, wh...
Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifi...
Stimulated Rarnarr backscattering (SRBS) is a promising concept to create ultrarintense Iaser pulses...
Stimulated Raman backscattering (SRS) has many unwanted effects in megajoule-scale inertially confin...