首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Reorientation-Induced Spectral Diffusion in Vibrational Sum-Frequency-Generation Spectroscopy
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Reorientation-Induced Spectral Diffusion in Vibrational Sum-Frequency-Generation Spectroscopy

机译:振动总和-频率-产生光谱中的重定向诱导光谱扩散

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There is a growing appreciation that dynamic processes play an important role in determining the line shape in surface-selective, nonlinear spectroscopies such as vibrational sum-frequency-generation (VSFG). Here we analyze the influence that reorientation can have on VSFG spectra when the vibrational transition frequency is a function of orientation. Under these circumstances, reorientation-induced spectral diffusion (RISD) causes the underlying spectral line shape to become time dependent. Unlike previously reported mechanisms through which reorientation can contribute to the VSFG signal, RISD influences the line shape regardless of the degree of polarization of the Raman transition that is probed. We assess the impact of RISD on VSFG spectra using a model system of liquid acetonitrile at a silica interface. Comparison of delay-time-dependent VSFG spectra with simulations that employ static line shapes suggests that RISD contributes substantially to the spectra, particularly at delay times that are comparable to or greater than the probe pulse duration. The observed behavior is in qualitative agreement with a two-state RISD model that uses orientational distributions determined from previous molecular dynamics simulations.
机译:人们日益认识到,动态过程在确定表面选择性的非线性光谱(例如振动和频率生成(VSFG))中的线形中起着重要作用。在这里,我们分析了当振动跃迁频率是取向的函数时,重新取向可能对VSFG谱产生的影响。在这些情况下,重新定向诱发的光谱扩散(RISD)会使基础光谱线的形状变得与时间相关。与先前报道的通过重定向可以对VSFG信号起作用的机制不同,RISD会影响线形,而与所探查的拉曼跃迁的极化程度无关。我们使用二氧化硅界面处的液体乙腈模型系统评估RISD对VSFG光谱的影响。将依赖于延迟时间的VSFG频谱与采用静态线条形状的仿真进行比较表明,RISD对该频谱的贡献很大,尤其是在与探针脉冲持续时间相当或更长的延迟时间。观察到的行为与使用先前分子动力学模拟确定的方向分布的两态RISD模型在质量上一致。

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