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Nonlinear optical stabilization of 1064-nm laser pulses with a two-photon absorbing liquid-dye salt system

机译:双光子吸收液染料盐系统对1064 nm激光脉冲的非线性光学稳定作用

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摘要

Highly effective optical power-limiting and optical-stabilization performances have been achieved in a new type of two-photon absorbing medium. That is a liquid-dye salt system, trans-4-[p-(N,N-dimethoxyethylamino)styryl]-N-3,6,9-trioxadecylpyridinium tetrafluoroborate (abbreviated as ASDPT), which features an unusually high molar concentration (~1 M) of two-photon absorbing chromophores and the capability of withstanding a higher pulsed laser power and energy. The nonlinear transmission property and output-input characteristics were studied based on a 1-cm-long liquid-dye salt sample by use of nanosecond 1064-nm laser pulses with a repetition rate variable from 1 to 10 Hz. A superior optical-stabilization behavior of the studied material was demonstrated; the relative fluctuation of the nanosecond laser pulses can be reduced by more than two times simply by passing them through this highly concentrated nonlinear absorbing medium.
机译:在新型的双光子吸收介质中已经实现了高效的光功率限制和光稳定性能。这是一种液体染料盐系统,即反式-4- [p-(N,N-二甲氧基乙基氨基)苯乙烯基] -N-3,6,9-三氧代十六烷基吡啶鎓四氟硼酸酯(缩写为ASDPT),具有极高的摩尔浓度( 〜1 M)的双光子吸收发色团,并具有较高的脉冲激光功率和能量。通过使用纳秒级1064 nm激光脉冲(重复频率范围为1到10 Hz)对1厘米长的液体染料盐样品进行非线性传输特性和输出输入特性的研究。证明了所研究材料具有优异的光学稳定性。只需使纳秒激光脉冲通过这种高度集中的非线性吸收介质,就可以将其相对波动减少两倍以上。

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