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Krypton fluoride laser pulse shortening by stimulated thermal scattering on a liquid surface

机译:液态表面上受激热散射缩短氟化thermal激光脉冲

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摘要

Pulse shortening of the backscatter of a KrF excimer laser beam focused on the surface of n-hexane is reported. Simultaneous measurements of the backscattered beam, a Fresnel reflected beam, incoherent scattered photons from a liquid surface, and a transmitted beam are performed. The results show that the surface reflected beam disappears followed by beam expansion and the transmitted beam is reduced to form a filamentlike structure with the onset of backscatter. The pulse width of the backscattered beam shows a clear dependence on the focal position in the liquid. Incoherent scattering is sharply enhanced when the laser beam is focused at the liquid surface where the backscattered beam is especially short. The observed phenomena indicate that stimulated thermal scattering is the pulse shortening mechanism. (C) 1997 Optical Society of America.
机译:据报道,聚焦在正己烷表面的KrF准分子激光束的反向散射脉冲缩短。同时测量反向散射光束,菲涅耳反射光束,来自液体表面的非相干散射光子和透射光束。结果表明,表面反射光束消失,随后光束扩展,透射光束被还原,形成丝状结构,并发生反向散射。反向散射光束的脉冲宽度明显取决于液体中的焦点位置。当激光束聚焦在反向散射光束特别短的液体表面时,非相干散射会大大增强。观察到的现象表明受激热散射是脉冲缩短机制。 (C)1997年美国眼镜学会。

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