首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Guiding of a laser beam in a collisionless magnetoplasma channel
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Guiding of a laser beam in a collisionless magnetoplasma channel

机译:激光束在无碰撞磁等离子体通道中的引导

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摘要

We present an investigation of laser guiding through an axially nonuniform collisionless magnetoplasma channel formed by the ionizing laser prepulse. With the propagation of a guided laser beam through such a preformed plasma channel, a ponderomotive force on account of the nonuniform intensity distribution of the laser beam comes into play, which further enhances the plasma channel. Unbalanced diffraction and refraction phenomena through such an axially nonuniform collisionless magnetoplasma channel results in alternate convergence and divergence of the laser beam. Wave equations governing the propagation characteristics of the ionizing prepulse and delayed pulse through an axialy nonuniform collisionless magnetoplasma channel have been solved by the moment theory approach. The effect of the magnetic field and intensity of a guided beam has been seen on the propagation of the second guided beam in the plasma channel. It is observed that there is an increase in the propagation of a guided beam with the increase in the magnetic field and intensity of the guided beam. This observation is very useful for the fast-ignitor concept, where the guided laser pulse is propagated through the plasma region without any absorption up to several Rayleigh lengths.
机译:我们目前对通过电离激光预脉冲形成的轴向非均匀无碰撞磁极通道进行激光引导的研究。随着引导的激光束通过这种预先形成的等离子体通道的传播,由于激光束的强度分布不均匀而产生的质动力开始起作用,这进一步增强了等离子体通道。通过这种轴向不均匀的无碰撞磁极等离子体通道的不平衡衍射和折射现象导致激光束交替会聚和发散。用矩理论方法求解了控制电离预脉冲和延迟脉冲通过轴向非均匀无碰撞磁极通道传播特性的波动方程。已经看到磁场和引导束的强度对第二引导束在等离子体通道中的传播的影响。可以看出,随着磁场和被引导光束强度的增加,被引导光束的传播也增加了。这种观察对于快速点火器概念非常有用,在快速点火器概念中,引导的激光脉冲传播通过等离子区域,而没有吸收到几个瑞利长度。

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