Femtosecond filamentation dynamics of synthesized coronary profile laser beam in air: numerical simulations

Y. Geints, A. Zemlyanov
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Abstract

Multiple filamentation in air of high-power ultrashort laser radiation with transverse intensity profile resembling a “corona-beam” (CB) composed by incoherent combining of several annularly distributed independent top-hat sub-beams is theoretically considered. Through the numerical solution of time-averaged nonlinear Schrodinger equation, we study the spatio-angular dynamics of synthesized near infrared CB along the optical path by varying the number and peak power of the beamlets. The evident advances in the multiple-filamentation region manipulating of synthesized CB are demonstrated. Particularly, by adjusting the number and aperture of the constituting sub-beams it makes possible to significantly delay the filamentation onset distance and increase the filamentation length in air.
合成冠状激光束在空气中的飞秒成丝动力学:数值模拟
从理论上考虑了高功率超短激光辐射在空气中的多重细丝现象,其横向强度分布类似于由几个环形分布的独立顶帽子光束非相干组合而成的“日冕束”。通过时间平均非线性薛定谔方程的数值解,通过改变光束的数量和峰值功率,研究了合成近红外CB沿光程的空间-角动力学。介绍了合成黑炭黑在多丝区调控方面取得的显著进展。特别是,通过调整构成子波束的数量和孔径,可以显著延迟成丝的起始距离并增加空气中的成丝长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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