非线性状态下贝塞尔光束的二次谐波产生

V. Belyi, N. Khilo, A.G. Maschenko
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引用次数: 0

摘要

摘要形式只给出。贝塞尔光束(BLB)频率的加减过程不仅可以调整激光辐射的波长,而且可以改变螺旋波前位错的顺序。与高斯光束不同,贝塞尔光束允许实现由矢量相互作用类型决定的多通道非线性过程。本文以BLB泵送的SHG为例,给出了多通道非线性过程的解析检验和数值模拟结果。各通道的基频场和倍频场是具有不同纵波数和横波数的blb。其中,每个SHG通道的特征是相位失配和重叠积分参数。给定的参数表达了纵向和横向SHG相位匹配的要求,并决定了二次谐波辐射的效率和空间结构。因此,以o-e型的SHG过程为例,可以用2M个抛物线型耦合方程组来描述,其中M为生成通道数。对给定方程组进行了数值求解,得到了二次谐波场的空间角结构,该结构取决于径向波数和输入BLB在基频处的宽度、功率以及非线性晶体的参数。研究了单分量(环或轴)和双分量SHG场的产生机制,以及在改变共线相位匹配方向时环形分量半径的调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Second harmonic generation by Bessel light beams in a nonlinear regime
The summary form only given. The processes of summation-subtraction of frequencies of Bessel light beams (BLB) allow not only to tune a wavelength of laser radiation, but also to change the order of screw wavefront dislocations. Unlike Gaussian beams, Bessel beams permit to realize a multichannel nonlinear process, determined by the type of vector interaction. In the report the results of analytical examination and numerical simulation of multichannel nonlinear processes are presented on the example of SHG pumped by BLB. The fields at the fundamental and doubled frequencies in each channel are BLBs with different longitudinal and transverse wave numbers. Thereof each of SHG channels is characterized by the parameters of phase-mismatch and overlap integral. The given parameters express the requirements of longitudinal and transverse SHG phase-matching and determine the efficiency and spatial structure of radiation of the second harmonics. As a result, the SHG process, for example, of oo-e type, is described by a system of 2M coupled equations of the parabolic type, where M is the number of generation channels. The numerical solution of the given system of equations is carried out and the spatially-angular structure of the second harmonics field is obtained depending on the radial wave number and the width of input BLB at the fundamental frequency, its power, and also parameters of a nonlinear crystal. The regimes of generation of a single-component (ring or axial) and two-component SHG field, and also the tuning of the radius of a ring component are investigated at changing the direction of the collinear phase-matching.
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