Balakin A A, Fraiman G M, Fisch N J, Suckewer S
Institute of Applied Physics, RAS, Nizhnii Novgorod, Russia 603950.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Sep;72(3 Pt 2):036401. doi: 10.1103/PhysRevE.72.036401. Epub 2005 Sep 2.
Compressing laser pulses to extremely high intensities through backward Raman amplification might be accomplished in a plasma medium. While the theory is relatively straightforward for homogeneous fully ionized plasma, a number of important effects enter when the plasma is not fully ionized. In particular, when a mixture of gases is employed to accomplish the coupling, there can be several thresholds for incremental ionization. The refraction of both the pump and the seed is then strongly affected by the plasma ionization. Moreover, in the case of Raman backscattering in partially ionized plasma, the degree of plasma ionization is particularly sensitive to the counterpropagating geometry. This idea is examined in light of data for a recent experiment on a Raman amplifier.
通过反向拉曼放大将激光脉冲压缩到极高强度,这在等离子体介质中或许可以实现。虽然对于均匀的完全电离等离子体来说,理论相对简单,但当等离子体未完全电离时,就会出现许多重要效应。特别是,当采用混合气体来实现耦合时,可能会存在多个增量电离阈值。此时,泵浦光和种子光的折射都会受到等离子体电离的强烈影响。此外,在部分电离等离子体中的拉曼背散射情况下,等离子体的电离程度对反向传播几何结构尤为敏感。根据最近一个拉曼放大器实验的数据对这一观点进行了研究。