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Tunable ultrafast infrared/visible laser to probe vibrational dynamics

机译:可调谐的超快红外/可见激光,可探测振动动力学

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摘要

A tunable, ultrafast (approx100 fs-approx1 ps) laser system generating mid-IR (3-10 (mu)m) and UV/visible (392-417 nm, 785-835 nm) radiation is described and its output characterized. The system is designed to explore vibrational dynamics in the condensed phase in a direct, two-pulse, time-resolved manner, using Raman spectroscopy as the probe. To produce vibrational resolution, probe pulses are spectrally narrowed by use of a long doubling crystal. Frequency-resolved optical gating is used to evaluate beam characteristics. An effective method for determining the temporal overlap of the pump and probe pulses for a one-color, 400 nm configuration is illustrated. Representative results from studies of heme and para-nitroaniline vibrational dynamics illustrate the effectiveness of the visible pump-visible probe portion of the system in illuminating fast structure and energy dynamics.
机译:描述了产生中红外(3-10μm)和紫外/可见光(392-417nm,785-835nm)辐射的可调谐超快(约100fs-约1ps)激光系统,并对其输出进行了表征。该系统设计为以拉曼光谱为探针,以直接,两脉冲,时间分辨的方式探索凝结相中的振动动力学。为了产生振动分辨率,使用长倍频晶体使探针脉冲在光谱上变窄。频率分辨光学选通用于评估光束特性。说明了一种确定单色和400 nm配置的泵浦脉冲和探测脉冲的时间重叠的有效方法。血红素和对硝基苯胺振动动力学研究的代表性结果说明了系统的可见泵可见探针部分在照亮快速结构和能量动力学方面的有效性。

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