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Unified treatment and measurement of the spectral resolution and temporal effects in frequency-resolved sum-frequency generation vibrational spectroscopy (SFG-VS)

机译:频率分辨和频产生振动光谱(SFG-VS)中光谱分辨率和时间效应的统一处理和测量

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The lack of understanding of the temporal effects and the restricted ability to control experimental conditions in order to obtain intrinsic spectral lineshapes in surface sum-frequency generation vibrational spectroscopy (SFG-VS) have limited its applications in surface and interfacial studies. The emergence of high-resolution broadband sum-frequency generation vibrational spectroscopy (HR-BB-SFG-VS) with sub-wavenumber resolution [Velarde et al., J. Chem. Phys., 2011,135, 241102] offers new opportunities for obtaining and understanding the spectral lineshapes and temporal effects in SFG-VS. Particularly, the high accuracy of the HR-BB-SFG-VS experimental lineshape provides detailed information on the complex coherent vibrational dynamics through direct spectral measurements. Here we present a unified formalism for the theoretical and experimental routes for obtaining an accurate lineshape of the SFG response. Then, we present a detailed analysis of a cholesterol monolayer at the air/water interface with higher and lower resolution SFG spectra along with their temporal response. With higher spectral resolution and accurate vibrational spectral lineshapes, it is shown that the parameters of the experimental SFG spectra can be used both to understand and to quantitatively reproduce the temporal effects in lower resolution SFG measurements. This perspective provides not only a unified picture but also a novel experimental approach to measuring and understanding the frequency-domain and time-domain SFG response of a complex molecular interface.
机译:缺乏对时间效应的理解以及在表面和频产生振动光谱学(SFG-VS)中获得固有光谱线形的控制实验条件的能力有限,限制了其在表面和界面研究中的应用。具有亚波数分辨率的高分辨率宽带和频产生振动光谱仪(HR-BB-SFG-VS)的出现[Velarde et al。,J. Chem。 Phys。,2011,135,241102]为获得和理解SFG-VS中的谱线形状和时间效应提供了新的机会。特别是,HR-BB-SFG-VS实验线形的高精度可通过直接频谱测量提供有关复杂相干振动动力学的详细信息。在这里,我们为获得SFG响应的精确线形的理论和实验路线提出了统一的形式主义。然后,我们对空气/水界面处的胆固醇单层膜进行了详细分析,并使用了更高和更低分辨率的SFG光谱以及它们的时间响应。具有更高的光谱分辨率和准确的振动光谱线形,表明实验SFG光谱的参数可用于理解和定量再现较低分辨率SFG测量中的时间效应。这种观点不仅提供了统一的图片,而且提供了一种新颖的实验方法来测量和理解复杂分子界面的频域和时域SFG响应。

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