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使用气相飞秒激光丝化的光学光谱学。

Optical spectroscopy using gas-phase femtosecond laser filamentation.

作者信息

Odhner Johanan, Levis Robert

机构信息

Department of Chemistry and Center for Advanced Photonics Research, Temple University, Philadelphia, Pennsylvania 19122; email:

出版信息

Annu Rev Phys Chem. 2014;65:605-28. doi: 10.1146/annurev-physchem-040513-103708. Epub 2014 Jan 9.

Abstract

Femtosecond laser filamentation occurs as a dynamic balance between the self-focusing and plasma defocusing of a laser pulse to produce ultrashort radiation as brief as a few optical cycles. This unique source has many properties that make it attractive as a nonlinear optical tool for spectroscopy, such as propagation at high intensities over extended distances, self-shortening, white-light generation, and the formation of an underdense plasma. The plasma channel that constitutes a single filament and whose position in space can be controlled by its input parameters can span meters-long distances, whereas multifilamentation of a laser beam can be sustained up to hundreds of meters in the atmosphere. In this review, we briefly summarize the current understanding and use of laser filaments for spectroscopic investigations of molecules. A theoretical framework of filamentation is presented, along with recent experimental evidence supporting the established understanding of filamentation. Investigations carried out on vibrational and rotational spectroscopy, filament-induced breakdown, fluorescence spectroscopy, and backward lasing are discussed.

摘要

飞秒激光成丝现象是激光脉冲自聚焦和等离子体散焦之间的一种动态平衡,以产生短至几个光学周期的超短辐射。这种独特的光源具有许多特性,使其作为一种用于光谱学的非线性光学工具具有吸引力,例如在高强度下在长距离上传播、自缩短、白光产生以及形成低密度等离子体。构成单根细丝且其空间位置可由其输入参数控制的等离子体通道可跨越数米长的距离,而激光束的多丝成丝在大气中可持续长达数百米。在这篇综述中,我们简要总结了目前对激光细丝用于分子光谱研究的理解和应用。本文介绍了成丝的理论框架,以及支持已确立的成丝理解的最新实验证据。讨论了在振动和旋转光谱、细丝诱导击穿、荧光光谱和反向激光发射方面所进行的研究。

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