Backus Ellen H G, Cyran Jenée D, Grechko Maksim, Nagata Yuki, Bonn Mischa
Max Planck Institute for Polymer Research , Ackermannweg 10 , 55128 Mainz , Germany.
J Phys Chem A. 2018 Mar 8;122(9):2401-2410. doi: 10.1021/acs.jpca.7b12303. Epub 2018 Feb 21.
Time-resolved and two-dimensional sum frequency generation (TR-SFG and 2D-SFG) spectroscopies are promising tools in the experimental study of molecular dynamics, specifically at interfaces. Most implementations of TR/2D-SFG spectroscopy rely on a pump-probe scheme, where an excitation pulse excites a fraction of interfacial molecules into the first excited state of a specific vibrational mode, and a subsequent SFG probe pair detects the time-dependent changes of the surface vibrational response. In steady state SFG spectroscopy, phase-resolved detection (also known as heterodyne-detection), as opposed to SFG intensity measurements, has been shown to be useful in unraveling the steady-state response of interfacial vibrations. Here, we explore the merits of phase-resolved TR/2D-SFG spectroscopy. This purely theoretical and numerical study reveals that, for a typical response from aqueous interfaces, the intensity 2D-SFG measurements contain the same information content as phase-resolved 2D-SFG measurements. We specifically analyze the frequency-dependence of the bleach lifetime (reflecting vibrational relaxation), and the time-dependent slope of the on-diagonal features observed in a 2D spectra. We show that for different systems, the intensity-based and phase-resolved 2D-SFG measurements provide the same information and are quantitatively very similar. We investigate the effect of different lineshapes, anharmonicity, and nonresonant signal contributions, and show that none of these effects substantially change the conclusion that intensity-based and phase-resolved 2D-SFG measurements provide equivalent information.
时间分辨和二维和频产生光谱(TR-SFG和2D-SFG)是研究分子动力学,特别是界面分子动力学的很有前景的实验工具。TR/2D-SFG光谱的大多数实现方式都依赖于泵浦-探测方案,其中一个激发脉冲将一部分界面分子激发到特定振动模式的第一激发态,随后一对SFG探测脉冲检测表面振动响应随时间的变化。在稳态SFG光谱中,与SFG强度测量相反,相分辨检测(也称为外差检测)已被证明有助于揭示界面振动的稳态响应。在这里,我们探讨相分辨TR/2D-SFG光谱的优点。这项纯理论和数值研究表明,对于来自水界面的典型响应,强度2D-SFG测量与相分辨2D-SFG测量包含相同的信息内容。我们具体分析了漂白寿命(反映振动弛豫)的频率依赖性,以及在二维光谱中观察到的对角特征的时间依赖性斜率。我们表明,对于不同的系统,基于强度的和相分辨的2D-SFG测量提供相同的信息,并且在定量上非常相似。我们研究了不同线形、非谐性和非共振信号贡献的影响,并表明这些影响都不会实质性地改变基于强度的和相分辨的2D-SFG测量提供等效信息这一结论。