Vu H X, Yin L, DuBois D F, Bezzerides B, Dodd E S
Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2005 Dec 9;95(24):245003. doi: 10.1103/PhysRevLett.95.245003. Epub 2005 Dec 8.
Simulations are reported of the Thomson scatter spectrum of electrostatic waves (ESWs) excited in single laser hot spots by backward stimulated Raman scattering (BSRS). Under conditions similar those in the recent experiments of Kline et al. [Phys. Rev. Lett. 94, 175003 (2005)], a spectral streak, resulting from the trapping-induced frequency shift of the ESW, is found for high wave-number ESWs, similar to the observations. This shift and parametric frequency matching lead to isolated BSRS pulses. Modes with acoustic dispersion, resulting from the trapping-modified electron velocity distribution, can enhance the frequency range of the streak.
报道了通过背向受激拉曼散射(BSRS)在单个激光热点中激发的静电波(ESW)的汤姆逊散射光谱的模拟结果。在与Kline等人最近的实验[《物理评论快报》94, 175003 (2005)]类似的条件下,对于高波数的ESW,发现了由ESW的俘获诱导频移导致的光谱条纹,这与观测结果相似。这种频移和参量频率匹配导致了孤立的BSRS脉冲。由俘获修正的电子速度分布产生的具有声色散的模式,可以拓宽条纹的频率范围。