This workwas supported in part by theNationalNatural Science Foundation of China(Grants No.10425416,10335020,10674175,60621063);the National High-Tech ICF Committee in China,and the National Basic Research Program of China(Grant No.2007CB310406).
With one-and two-dimensional particle-in-cell(PIC)codes,we simulate the generation of high power terahertz(THz)emission from the interaction of ultrashort intense lasers with tenuous plasma and gas targets.By driving ...
National High Technology ICF Committee in China;National Natural Science Fund of China(Nos.10675024,10335020,10375011,and 10576007);National Basic Research Program of China(973 Program)(No.2007CB815101);the Laboratory of Computational Physics(No.51479050205ZW0905)
We have developed a three dimensional (3D) PIC (particle-in-cell)-MC (Monte Carlo) code in order to simulate an electron beam transported into the dense matter based on our previous two dimensional code. The rel...
supported by National High Technology ICF Committee in China;the National Natural Science Fund of China(Nos.10675024,10335020,10375011 and 10576007);the Laboratory of Computational Physics(No.51479050205ZW0905)
Stimulated Raman particle-in-cell (PIC) simulations scattering (SRS) in a low-density The backward stimulated Raman plasma slab is investigated by scattering (B-SRS) dominates initially and erodes the head of th...
Project supported by the National Natural Science Foundation of China (Grant Nos 10575015, 10445003, 10335020 and 10375011), the National Key Laboratory of Laser Fusion, China (Grant No 51480010205ZW0901), the Scientific Research Foundation for Returned 0verseas Chinese Scholars, State Education Ministry and the Foundation of China Academy of Engineering Physics (Grant No 20060217).
This paper shows that the standing, backward- and forward-accelerated large amplitude relativistic electromagnetic solitons induced by intense laser pulse in long underdense collisionless homogeneous plasmas can be ob...
supported by National Natural Science Foundation of China(No.10335020)
By using a one-dimensional self-consistent relativistic fluid model, an investigation is made numerically on relativistic electromagnetic solitons with a high intensity in cold overdense plasmas with an electrons' in...