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Time- and frequency-resolved coherent anti-Stokes Raman scattering spectroscopy with sub-25 fs laser pulses

机译:低于25 fs激光脉冲的时间和频率分辨相干反斯托克斯拉曼散射光谱

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In general, many different diagrams can contribute to the signal measured in broadband four-wave mixing experiments. Care must therefore be taken when designing an experiment to be sensitive to only the desired diagram by taking advantage of phase matching, pulse timing, sequence, and the wavelengths employed. We use sub-25 fs pulses to create and monitor vibrational wavepackets in gaseous iodine, bromine, and iodine bromide through time- and frequency-resolved femtosecond coherent anti-Stokes Raman scattering (CARS) spectroscopy. We experimentally illustrate this using iodine, where the broad bandwidths of our pulses, and Boltzmann population in the lower three vibrational levels conspire to make a single diagram dominant in one spectral region of the signal spectrum. In another spectral region, however, the signal is the sum of two almost equally contributing diagrams, making it difficult to directly extract information about the molecular dynamics. We derive simple analytical expressions for the time- and frequency-resolved CARS signal to study the interplay of different diagrams. Expressions are given for all five diagrams which can contribute to the CARS signal in our case. (c) 2008 American Institute of Physics.
机译:通常,许多不同的图表可以对宽带四波混频实验中测得的信号做出贡献。因此,在设计实验时,必须充分利用相位匹配,脉冲时序,序列和所用波长,以仅对所需图表敏感。我们使用低于25 fs的脉冲通过时间和频率分辨的飞秒相干反斯托克斯拉曼散射(CARS)光谱创建和监视气态碘,溴和溴化碘中的振动波包。我们使用碘实验性地说明这一点,其中我们的脉冲的宽带宽以及较低的三个振动水平的玻尔兹曼总数共同使单个图在信号频谱的一个频谱区域中占优势。但是,在另一个光谱区域中,信号是两个几乎相等贡献的图的总和,因此很难直接提取有关分子动力学的信息。我们导出了时间和频率分辨的CARS信号的简单解析表达式,以研究不同图的相互作用。给出了所有五个图表的表达式,在我们的情况下,这些表达式可能对CARS信号有贡献。 (c)2008年美国物理研究所。

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