Effect of light absorption and critical beam power on self-focusing of Gaussian laser beam in collision less magnetized plasma

T. U. Urunkar, K. M. Gavade, B. D. Vhanmore, A. T. Valkunde, S. Patil, M. Takale
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引用次数: 2

Abstract

In the present paper, authors have studied the effect of light absorption and critical beam power on self-focusing of Gaussian laser beam propagating through collisionless magnetized plasma. The field distribution in the medium is expressed in terms of beam-width parameter and absorption coefficient. Usual parabolic equation approach under WKB and paraxial approximations is employed to obtain the differential equation for beam width parameter. It is found that critical critical beam power and absorption coefficient play vital role in propagation of Gaussian laser beam in collisionless magnetized plasma. The behavior of beam-width parameter with the normalized distance of propagation is studied at various values of critical beam power with different absorption levels in magnetized plasma. The results are presented in the form of graphs and discussed.In the present paper, authors have studied the effect of light absorption and critical beam power on self-focusing of Gaussian laser beam propagating through collisionless magnetized plasma. The field distribution in the medium is expressed in terms of beam-width parameter and absorption coefficient. Usual parabolic equation approach under WKB and paraxial approximations is employed to obtain the differential equation for beam width parameter. It is found that critical critical beam power and absorption coefficient play vital role in propagation of Gaussian laser beam in collisionless magnetized plasma. The behavior of beam-width parameter with the normalized distance of propagation is studied at various values of critical beam power with different absorption levels in magnetized plasma. The results are presented in the form of graphs and discussed.
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光吸收和临界光束功率对高斯激光束在无碰撞磁化等离子体中自聚焦的影响
本文研究了光吸收和临界光束功率对高斯激光束在无碰撞磁化等离子体中自聚焦的影响。介质中的场分布用波束宽度参数和吸收系数表示。采用WKB近似和近轴近似下常用的抛物方程方法,求出光束宽度参数的微分方程。研究发现,临界光束功率和吸收系数对高斯激光束在无碰撞磁化等离子体中的传输起着至关重要的作用。研究了磁化等离子体中不同吸收水平下不同临界光束功率下波束宽度参数随归一化传播距离的变化规律。结果以图表的形式给出,并进行了讨论。本文研究了光吸收和临界光束功率对高斯激光束在无碰撞磁化等离子体中自聚焦的影响。介质中的场分布用波束宽度参数和吸收系数表示。采用WKB近似和近轴近似下常用的抛物方程方法,求出光束宽度参数的微分方程。研究发现,临界光束功率和吸收系数对高斯激光束在无碰撞磁化等离子体中的传输起着至关重要的作用。研究了磁化等离子体中不同吸收水平下不同临界光束功率下波束宽度参数随归一化传播距离的变化规律。结果以图表的形式给出,并进行了讨论。
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