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强激光脉冲在空气中的受激拉曼散射。

Stimulated Raman scattering of intense laser pulses in air.

作者信息

Peñano J R, Sprangle P, Serafim P, Hafizi B, Ting A

机构信息

Plasma Physics Division, Naval Research Laboratory, Washington, DC 20375, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Nov;68(5 Pt 2):056502. doi: 10.1103/PhysRevE.68.056502. Epub 2003 Nov 24.

Abstract

Stimulated rotational Raman scattering (SRRS) is known to be one of the processes limiting the propagation of high-power laser beams in the atmosphere. In this paper, SRRS, Kerr nonlinearity effects, and group velocity dispersion of short laser pulses and pulse trains are analyzed and simulated. Fully time-dependent, three-dimensional, nonlinear propagation equations describing the Raman interaction, optical Kerr nonlinearity due to bound electrons, and group velocity dispersion are presented and discussed. The effective time-dependent nonlinear refractive index containing both Kerr and Raman processes is derived. Linear stability analysis is used to obtain growth rates and phase matching conditions for the SRRS, modulational, and filamentation instabilities. Numerical solutions of the propagation equations in three dimensions show the detailed evolution of the Raman scattering instability for various pulse formats. The dependence of the growth rate of SRRS on pulse duration is examined and under certain conditions it is shown that short (approximately psec) laser pulses are stable to the SRRS instability. The interaction of pulses in a train through the Raman polarization field is also illustrated.

摘要

受激旋转拉曼散射(SRRS)是限制高功率激光束在大气中传播的过程之一。本文对短激光脉冲和脉冲序列的SRRS、克尔非线性效应以及群速度色散进行了分析和模拟。给出并讨论了描述拉曼相互作用、束缚电子引起的光学克尔非线性以及群速度色散的全时变三维非线性传播方程。推导了包含克尔和拉曼过程的有效时变非线性折射率。利用线性稳定性分析得到了SRRS、调制和丝状不稳定性的增长率和相位匹配条件。三维传播方程的数值解展示了各种脉冲形式下拉曼散射不稳定性的详细演化。研究了SRRS增长率对脉冲持续时间的依赖性,并且在某些条件下表明短(约皮秒)激光脉冲对SRRS不稳定性是稳定的。还说明了脉冲序列中脉冲通过拉曼偏振场的相互作用。

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