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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Zonal model of nonstationary self-focusing of femtosecond laser radiation in air: effective beam characteristics evolution
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Zonal model of nonstationary self-focusing of femtosecond laser radiation in air: effective beam characteristics evolution

机译:飞秒激光在空气中的非平稳自聚焦区域模型:有效光束特性演化

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摘要

The generic scenario of intense femtosecond laser pulse propagation in the air from the viewpoint of evolution of its integral effective parameters (energy transfer coefficient, effective radius, effective duration, limiting angular divergence) is considered. The analysis of variation of the effective parameters along the propagation path in the single and multiply filamentation scenarios based on numerical calculations is presented. It is shown that the process of self-action of the ultrashort radiation is characterized by the formation in a medium of the nonlinearity layer, after which optical pulse propagates quasi-linearly with the limiting angular divergence that depends mainly on initial pulse power. The effective pulse temporal duration and the effective beam radius increase after the passage through the nonlinearity layer, and their values are mostly determined by the initial beam power also. The coefficient of energy transmission of femtosecond laser radiation is lower than in the linear medium and has a tendency to decrease with the increase of the pulse power.
机译:从其整体有效参数(能量传递系数,有效半径,有效持续时间,极限角发散)的演变角度考虑了在空中强烈飞秒激光脉冲传播的一般情况。提出了基于数值计算的单丝和多丝情况下有效参数沿传播路径的变化分析。结果表明,超短辐射的自作用过程的特征是在非线性层的介质中形成,之后,光脉冲以近似线性传播,其极限角发散主要取决于初始脉冲功率。穿过非线性层后,有效脉冲时间持续时间和有效射束半径会增加,它们的值也主要由初始射束功率决定。飞秒激光辐射的能量传输系数低于线性介质,并且随着脉冲功率的增加而降低。

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