Loiseau P, Morice O, Teychenné D, Casanova M, Hüller S, Pesme D
Commissariat à l'Energie Atomique, BP 12, 91680 Bruyères-Le-Châtel, France.
Phys Rev Lett. 2006 Nov 17;97(20):205001. doi: 10.1103/PhysRevLett.97.205001. Epub 2006 Nov 13.
We present results of two-dimensional simulations of the stimulated Brillouin scattering (SBS) of an optically smoothed laser beam propagating in an expanding plasma. In the weak damping limit, both backscattered and transmitted light waves exhibit an additional spatiotemporal incoherence, which is shown to be induced by SBS taking place in an inhomogeneous plasma. This mechanism is not related to laser-beam self-focusing and is thus complementary to plasma-induced smoothing [A. J. Schmitt and B. B. Afeyan, Phys. Plasmas 5, 503 (1998)]. The incoherence induced by SBS in the entrance part of the plasma could reduce the growth of parametric instabilities developing further inside the plasma and is able to significantly enlarge the spreading angle of the transmitted light. The angular width of the backscattered light is also found to be significantly larger than the aperture angle of the incident beam.
我们给出了在膨胀等离子体中传播的光学平滑激光束受激布里渊散射(SBS)的二维模拟结果。在弱阻尼极限下,背向散射光和透射光波都表现出额外的时空非相干性,这被证明是由非均匀等离子体中发生的SBS引起的。这种机制与激光束自聚焦无关,因此是对等离子体诱导平滑的补充 [A. J. 施密特和B. B. 阿费扬,《物理等离子体》5, 503 (1998)]。等离子体入口部分由SBS引起的非相干性可以减少等离子体内部进一步发展的参数不稳定性的增长,并且能够显著扩大透射光的发散角。还发现背向散射光的角宽度明显大于入射光束的孔径角。