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Detecting weak signals from interfaces by high accuracy phase-resolved SFG spectroscopy

机译:通过高精度相位分辨的SFG光谱检测来自接口的弱信号

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摘要

Much work over the last 25 years has demonstrated that the interface-specific, all-optical technique, vibrational sum frequency generation (v-SFG) spectroscopy, is often uniquely capable of characterizing the structure and dynamics of interfacial species. The desired information in such a measurement is the complex second order susceptibility which gives rise to the nonlinear response from interfacial molecules. The ability to detect molecular species yielding only small contributions to the susceptibility is meanwhile limited by the precision by which the spectral phase and amplitude can be determined. In this study we describe a new spectrometer design that offers unprecedented phase and amplitude accuracy for extended studies that involve multiple spectral acquisitions while modifying sample properties. The key to this significant improvement to the sensitivity of the technique is the combination of a full collinear beam geometry with broadband spectral sampling and the ability to simultaneously measure the complex sample and reference spectrum. We show that using this technique uncertainties in the reference phase and amplitude can be greatly reduced. Furthermore, we show that using balanced detection, the signal to noise ratio can be increased by one order of magnitude. The capabilities of the spectrometer are demonstrated by the isolation of a small isotropic surface signal from the bulk dominated nonlinear optical response of z-cut quartz. The achieved precision of our spectrometer enables measurements not currently feasible in v-SFG spectroscopy.
机译:过去25年来的工作已经证明,界面特异性,全光技术,振动和频率产生(V-SFG)光谱通常是独特的,能够表征界面种类的结构和动态。在这种测量中的所需信息是复杂的二阶易感性,其产生来自界面分子的非线性响应。检测分子物质的能力仅产生对易感性的少量贡献,同时可以限制可以确定光谱相和幅度的精度。在这项研究中,我们描述了一种新的光谱仪设计,该设计提供了前所未有的相位和幅度精度,用于扩展研究,该研究涉及多个光谱采集,同时修改样本属性。这种显着改善对技术灵敏度的显着改善的关键是具有宽带光谱采样的全共线梁几何形状的组合,以及同时测量复杂样品和参考光谱的能力。我们表明,可以大大减少参考阶段和幅度的这种技术的不确定性。此外,我们表明,使用平衡检测,噪声比的信号可以增加一个幅度。光谱仪的能力通过分离来自Z-Cut石英的体积主导的非线性光学响应的​​小的各向同性表面信号来证明。实现光谱仪的精度使得目前在V-SFG光谱中无法进行测量。

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