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Dependence of line shapes in femtosecond broadband stimulated Raman spectroscopy on pump-probe time delay.

机译:飞秒宽带激发拉曼光谱中线形对泵浦探测时间延迟的依赖性。

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摘要

The effect of the time delay between the picosecond Raman pump and the femtosecond Stokes probe pulse on the Raman gain line shape in femtosecond broadband stimulated Raman spectroscopy (FSRS) is presented. Experimental data are obtained for cyclohexane to investigate the dependence of the FSRS line shape on this time delay. Theoretical simulations of the line shapes as a function of the time delay using the coupled wave theory agree well with experimental data, recovering broad line shapes at positive time delays and narrower bands with small Raman loss side wings at negative time delays. The analysis yields the lower bounds of the vibrational dephasing times of 2.0 ps and 0.65 ps for the 802 and 1027 cm(-1) modes for cyclohexane, respectively. The theoretical description and simulation using the coupled wave theory are also consistent with the observed Raman gain intensity profile over time delay, reaching the maximum at a slightly negative time delay (approximately -1 ps), and show that the coupled wave theory is a good model for describing FSRS.
机译:提出了皮秒拉曼泵和飞秒斯托克斯探针之间的时间延迟对飞秒宽带激发拉曼光谱(FSRS)中拉曼增益线形的影响。获得了环己烷的实验数据,以研究FSRS线形对此时间延迟的依赖性。使用耦合波理论将线形作为时间延迟的函数进行理论模拟,与实验数据非常吻合,在正向时间延迟时恢复宽的线形,在负向时间延迟时恢复具有较小拉曼损耗侧翼的较窄带。该分析分别为802和1027 cm(-1)模式的环己烷产生了2.0 ps和0.65 ps的振动移相时间的下限。使用耦合波理论的理论描述和仿真也与观察到的随时间延迟的拉曼增益强度分布一致,在稍微负的时间延迟(约-1 ps)时达到最大值,这表明耦合波理论是一种很好的方法。描述FSRS的模型。

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