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Regularities of femtosecond filamentation in the case of superposition of Gaussian and annular laser beams

机译:高斯和环形激光束叠加的情况下飞秒细丝的规律

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摘要

The self-action of high-power femtosecond laser beams with a radiation wavelength of 800 nm (formed by superposition of Gaussian and annular beams) in air is theoretically modelled. A detailed analysis of self-focusing and filamentation of this radiation is performed based on the numerical solution of the spectral equation of the unidirectional propagation of a wave packet with allowance for the nonlinearity of the medium, and by tracing averaged diffraction-optical rays. It is shown that, in terms of the diffraction-beam optics, the outer annulus forms a waveguide, which facilitates self-trapping of the central part of the combined beam, supplying the light energy to the filament. The spatial stability of this waveguide depends on the energy stored in the annulus and on the distance from the latter to the beam axis.
机译:在理论上建模了在空气中具有800nm的辐射波长(通过高斯和环形光束的叠加形成)的高功率飞秒激光束的自动。 基于具有介质的非线性的宽度的波分组的单向传播的光谱方程的光谱方程的数值解,以及通过跟踪平均衍射光学光线来执行对该辐射的自聚焦和丝的详细分析。 结果表明,就衍射光束光学器件而言,外环形形成波导,这有利于组合光束的中心部分的自捕集,向灯丝提供光能。 该波导的空间稳定性取决于存储在环中的能量,并且在与后者到梁轴的距离上。

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