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Nonlinear interaction of intense hypergeometric Gaussian subfamily laser beams in plasma

机译:高等高斯高斯亚族激光束在等离子体中的非线性相互作用

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摘要

Propagation of Hypergeometric-Gaussian laser beam in a nonlinear plasma medium is investigated by considering the Source Dependent Expansion method. A subfamily of Hypergeometric-Gaussian beams with a non-negative, even and integer radial index, can be expressed as the linear superposition of finite number of Laguerre-Gaussian functions. Propagation of Hypergeometric-Gaussian beams in a nonlinear plasma medium depends on the value of radial index. The bright rings' number of these beams is changed during the propagation in plasma medium. The effect of beam vortex charge number 1 and initial (input) beam intensity on the self-focusing of Hypergeometric-Gaussian beams is explored. Also, by choosing the suitable initial conditions, Hypergeometric-Gaussian subfamily beams can be converted to one or more mode components that a typical of mode conversion may be occurred. The self-focusing of these winding beams can be used to control the focusing force and improve the electron bunch quality in laser plasma accelerators. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过考虑源依赖展开法研究了超几何高斯激光束在非线性等离子体介质中的传播。具有非负,偶数和整数径向指数的超几何高斯光束的一个子族可以表示为有限数量的Laguerre-Gaussian函数的线性叠加。高几何高斯光束在非线性等离子体介质中的传播取决于径向指数的值。在等离子介质中传播期间,这些光束的亮环数会发生变化。探索了束流涡数1和初始(输入)束强度对超几何高斯束自聚焦的影响。而且,通过选择合适的初始条件,超几何-高斯子族光束可以被转换成可能发生典型的模式转换的一个或多个模式分量。这些绕线束的自聚焦可用于控制聚焦力并改善激光等离子体加速器中的电子束质量。 (C)2016 Elsevier Ltd.保留所有权利。

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