A numerical code based on an eikonal formalism has been developed to simulate laser-plasma interactions, specifically Raman backscatter(RBS). In this code, the dominant laser modes are described by their wave envelopes, avoiding the need to resolve the laser frequency; appropriately time-averaged equations describe particle motion. The code is fully kinetic, and thus includes critical physics such as particle trapping and Landau damping which are beyond the scope of the commonly used fluid three-wave equations. The dominant forces on the particles are included: the ponderomotive force resulting from the beat wave of the forward and backscattered laser fields and the self-consistent plasma electric field. The code agrees well, in the appropr...
1-D Eulerian Vlasov-Maxwell simulations are presented which show kinetic enhancement of stimulated R...
In this investigation the suitable equations for describing the nonlinear dynamics of the interactio...
The recently proposed backward Raman laser amplification scheme utilizes the stimulated Raman backsc...
The electron kinetic effects on Raman backscattering and Raman backward laser amplification were ana...
Raman backscattering (RBS) in an infinite homogeneous laser-plasma system was investigated with the ...
A new fast and accurate scheme is introduced to simulate the Raman backscattering of laser pulses in...
A new envelope-kinetic method for the simulation of Raman backscattering and laser amplification is ...
Pulse compression using the Raman backscatter (RBS) in plasmas was numerically investigated for the ...
A new test particle method is presented for self-consistent incorporation of the kinetic effects int...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, February 2006.This electro...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
In 2006/2007 we continued to study several issues related to underdense laser-plasma interactions. W...
1-D Eulerian Vlasov-Maxwell simulations are presented which show kinetic enhancement of stimulated R...
In this investigation the suitable equations for describing the nonlinear dynamics of the interactio...
The recently proposed backward Raman laser amplification scheme utilizes the stimulated Raman backsc...
The electron kinetic effects on Raman backscattering and Raman backward laser amplification were ana...
Raman backscattering (RBS) in an infinite homogeneous laser-plasma system was investigated with the ...
A new fast and accurate scheme is introduced to simulate the Raman backscattering of laser pulses in...
A new envelope-kinetic method for the simulation of Raman backscattering and laser amplification is ...
Pulse compression using the Raman backscatter (RBS) in plasmas was numerically investigated for the ...
A new test particle method is presented for self-consistent incorporation of the kinetic effects int...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, February 2006.This electro...
Stimulated Raman backscattering in plasma is potentially an efficient method of amplifying laser pul...
Raman backscattering (RBS) in plasma is the basis of plasma-based amplifiers and is important in las...
The impact of thermal effects on Raman amplification in plasma is investigated theoretically. It is ...
In 2006/2007 we continued to study several issues related to underdense laser-plasma interactions. W...
1-D Eulerian Vlasov-Maxwell simulations are presented which show kinetic enhancement of stimulated R...
In this investigation the suitable equations for describing the nonlinear dynamics of the interactio...
The recently proposed backward Raman laser amplification scheme utilizes the stimulated Raman backsc...