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Enhanced Raman scattering of a rippled laser beam in a magnetized collisional plasma

机译:磁化碰撞等离子体中波纹激光束的增强拉曼散射

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In the laser-plasma interaction experiments, self-focusing and filamentation affect quite a large number of other parametric processes including stimulated scattering processes. Nonlinearity considered in the present problem is the collisional type. The coupling between the main beam, ripple, and excited electron plasma wave is strong. Authors have investigated the growing interaction of a rippled laser beam with an electron plasma wave leading to enhanced Raman scattering. An expression for scattered power is derived and the effect of the externally applied magnetic field on the enhancement of scattered power is observed. From computational results, it is observed that the effect of increased intensity of the main beam leads to suppression of power associated with the Raman scattered wave.
机译:在激光-等离子体相互作用实验中,自聚焦和丝状化会影响很多其他参数过程,包括受激散射过程。本问题中考虑的非线性是碰撞类型。主光束,波纹和激发的电子等离子体波之间的耦合很强。作者研究了波纹激光束与电子等离子波之间不断增长的相互作用,从而增强了拉曼散射。推导了散射功率的表达式,并观察到外部施加的磁场对散射功率增强的影响。从计算结果可以看出,主光束强度增加的效果导致抑制与拉曼散射波有关的功率。

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