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首页> 外文期刊>Journal of Russian laser research >ANALYSIS OF THE INTENSITY RANGE FOR SELF-FOCUSING OF BESSEL-GAUSS LASER BEAMS IN PLASMA
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ANALYSIS OF THE INTENSITY RANGE FOR SELF-FOCUSING OF BESSEL-GAUSS LASER BEAMS IN PLASMA

机译:等离子体中贝塞尔高斯激光束自聚焦强度范围的分析

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摘要

We study the propagation dynamics of zeroth-order Bessel-Gauss laser beams in plasma in the relativistic ponderomotive regime of interaction. Based on the paraxial and Wentzel-Kramers-Brillouin approximations, we derive the nonlinear evolution equation governing the laser beam width parameter, in view of the parabolic equation approach. We predict the range of intensity for self-focusing of Bessel-Gauss laser beams with increase in plasma electron temperature. While analyzing the condition for self-trapping of Bessel-Gauss beams, we point out and discuss three regimes characterized by steady divergence, self-focusing, and oscillatory divergence of the laser-beam propagation in plasma. In particular, we consider the effect of the transverse component of the wave parameter in exploring the intensity range for self-focusing. The intensity range for self-focusing of Gaussian beam in the considered regime of interaction with plasma is also deduced as a particular case in our work.
机译:我们研究了相互作用的抗折磨制度中的等离子体中的零级贝塞尔高斯激光束的传播动态。考虑到抛物线方程方法,我们基于近轴和去梁克拉姆 - 布里渊 - 布里渊近似,从而导出了激光束宽度参数的非线性演化方程。我们预测贝塞尔高斯激光束自聚焦的强度范围随着等离子体电子温度的增加。在分析贝塞尔高斯梁的自捕获条件的同时,我们指出并讨论了三种以等离子体中激光束传播的稳定发散,自聚焦和振荡偏转的三个制度。特别地,我们考虑波参数的横向分量在探索自聚焦的强度范围内的效果。在考虑与等离子体的所考虑的与等离子体方案中,高斯梁自聚焦的强度范围也被推导出在我们的工作中的特定情况。

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