飞秒辐射在空气中的传播与亚衍射发散光束的形成

A. Zemlyanov, G. Matvienko
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引用次数: 0

摘要

本文讨论了钛蓝宝石激光器(波长0.78 $\mu\mathrm{m}$,峰值脉冲功率1 TW)产生的宽(直径5 cm)飞秒激光束的复杂传输研究结果。通过引入可控的波相位畸变,以牺牲多单元可变形镜为代价,改变了成丝区域的位置及其结构。用这种反射镜(与球面透镜和反射镜相比)进行激光辐射聚焦的优点得到了证明。聚焦飞秒激光辐射与双形态可变形反射镜允许沿整个路径移动的灯丝区域,并没有(显着)减少其长度。在激光束中形成的高强度光通道的空间位置可以配置。在无电离的辐射传播状态下,形成了有序的高强度(1011-1012 W/cm2)弱发散(小于0.01 mrad)光通道。这些通道的特点是直径为毫米,空间范围大(超过100米)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propagation of Femtosecond Radiation in Air and the Formation of Subdiffraction Divergence Beams
The results of complex studies of propagation of a wide (5 cm diameter) femtosecond laser beam generated by a titanium-sapphire laser (wavelength 0.78 $\mu\mathrm{m}$, peak pulse power 1 TW) are discussed. Both the location of the domain where filamentation occurs and its structure were changed by introducing controlled distortions of the wave phase at the expense of a multi-element deformable mirror. The advantages of using this mirror (compared to spherical lenses and mirrors) for laser radiation focusing are demonstrated. Focusing femtosecond laser radiation with a bimorph deformable mirror allows the filamentation region to be moved along the entire path and does not (significantly) decrease its length. The spatial position of the high-intensity light channels formed in the laser beam can be configured. The existence of a regime of radiation propagation without ionization is shown, in which ordered sets of high-intensity (1011–1012 W/cm2) weakly diverging (less than 0.01 mrad) light channels are formed. These channels are characterized by a millimeter diameter and large spatial extent (over 100 m).
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