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首页> 外文期刊>Atmospheric and oceanic optics >Energy Light Structures during Femtosecond Laser Radiation Filamentation in Air. To the 50th Anniversary of the First Paper about Light Self-Focusing
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Energy Light Structures during Femtosecond Laser Radiation Filamentation in Air. To the 50th Anniversary of the First Paper about Light Self-Focusing

机译:飞秒激光在空气中辐射成丝时的能量光结构。到第一篇有关光自聚焦的论文发表50周年

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摘要

A class of energy light structures in nonlinear wave physics, so-called diffraction-beam tubes in a self-focusing dissipative medium, has been studied. It is shown that their interaction along a high-power fem-tosecond laser radiation propagation path produces areas of light energy localization, stable in physical char-acteristics, i.e., a filament and a post-filamentation channel, as well as an energy-conservative periphery. Stabilization of boundaries of the above areas is provided by additional contraction of a diffractive nature from the side of the periphery. The dependencies of filamentation length of a laser pulse on the power and beam radius and the fact of high intensity conservation in the post-filamentation light channel are interpreted using this concept.
机译:已经研究了非线性波物理学中的一类能量光结构,即自聚焦耗散介质中的所谓的衍射束管。结果表明,它们沿大功率飞秒激光辐射传播路径的相互作用产生了光能定位区域,其物理特性稳定,即长丝和后长丝通道,以及能量守恒的区域。周边。上述区域边界的稳定是通过从外围的侧面进一步收缩具有衍射性质而实现的。使用此概念可以解释激光脉冲的灯丝长度与功率和光束半径之间的相关性以及在灯丝后光通道中高强度守恒的事实。

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