Specifics of multiple filamentation formation for femtosecond laser radiation with topological charge

A. Bulygin, A. Zemlyanov
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Abstract

Evolution of local instability in a ring vortex beam propagating in the turbulent atmosphere with highest nonlinearities of the refractive index as well as in uence of the effective characteristics of the light beam is investigated based on numerical calculation of the nonlinear Schrodinger equation with high-order nonlinearities. Propagation of high-power femtosecond laser radiation (HPFLR) with topological charge in the random medium under overlap of an amplitude-phase mask and an original beam is considered. Depending on the mask configuration and initial radiation power, rotation of the beam can lead both to converge and growth more distant of filamentation beginning as well as extension of filamentation area by two and more times.
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带拓扑电荷的飞秒激光辐射多丝形成的特点
基于高阶非线性薛定谔方程的数值计算,研究了具有最高折射率非线性的环形涡旋光束在湍流大气中传播时的局部不稳定性演变及其对光束有效特性的影响。研究了带拓扑电荷的高功率飞秒激光在随机介质中,在幅相掩模和原始光束重叠的情况下的传播。根据掩模结构和初始辐射功率的不同,光束的旋转既可以使成丝开始的会聚和增长更远,也可以使成丝面积扩大两倍以上。
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