论文标题

正弦密度调制对不均匀等离子体中刺激的拉曼散射的影响

Influences of sinusoidal density modulation on stimulated Raman scattering in inhomogeneous plasmas

论文作者

Chen, Y., Zheng, C. Y., Liu, Z. J., Cao, L. H., Feng, Q. S., Chen, Y. G., Huang, Z. M., Xiao, C. Z.

论文摘要

通过三波耦合方程,完全动力学的Vlasov模拟和细胞(PIC)模拟中的粒子(PIC)模拟,研究了正弦密度调制对刺激的拉曼散射(SRS)反射率的影响。通过三波耦合方程的数值解,我们发现正弦密度调节能够诱导绝对SRS,即使Rosenbluth增益小于π小于π,并且我们给出了可以诱导绝对SRS的调节型波长和振幅区域,同意早期研究。弗拉索夫模拟获得的平均反射率具有相同的趋势,而三波方程获得的绝对SR的增长率。与基本增益长度相比,调节波长不如引起绝对不稳定性,而是能够通过谐波波抑制SRS的通胀。而且,PIC模拟定性地与我们的Vlasov模拟一致。我们的结果提供了实验中高反射率的高反射率的替代解释,这是由于长波长调制引起的,并且是通过使用短波长度调制来抑制SRS的潜在方法。

The influence of sinusoidal density modulation on the stimulated Raman scattering (SRS) reflectivity in inhomogeneous plasmas is studied by three-wave coupling equations, fully kinetic Vlasov simulations and particle in cell (PIC) simulations. Through the numerical solution of three-wave coupling equations, we find that the sinusoidal density modulation is capable of inducing absolute SRS even though the Rosenbluth gain is smaller than π, and we give a region of modulational wavelength and amplitude that the absolute SRS can be induced, which agrees with early studies. The average reflectivity obtained by Vlasov simulations has the same trend with the growth rate of absolute SRS obtained by three-wave equations. Instead of causing absolute instability, modulational wavelength shorter than a basic gain length is able to suppress the inflation of SRS through harmonic waves. And, the PIC simulations qualitatively agree with our Vlasov simulations. Our results offer an alternative explanation of high reflectivity at underdense plasma in experiments, which is due to long-wavelength modulation, and a potential method to suppress SRS by using the short-wavelength modulation.

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