Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831.
Biointerphases. 2022 Apr 26;17(2):021201. doi: 10.1116/6.0001817.
In this tutorial review, we discuss how the choice of upconversion pulse shape in broadband vibrational sum-frequency generation (SFG) spectrometer design impacts the chemical or physical insights one can obtain from a set of measurements. A time-domain picture of a vibrational coherence being mapped by a second optical field is described and the implications of how this mapping, or upconversion process, takes place are given in the context of several popular and emerging approaches found in the literature. Emphasis is placed on broadband frequency-domain measurements, where the choice of upconversion pulse enhances or limits the information contained in the SFG spectrum. We conclude with an outline for a flexible approach to SFG upconversion using pulse-shaping methods and a simple guide to design and optimize the associated instrumentation.
在本教程回顾中,我们讨论了在宽带振动和频产生(SFG)光谱仪设计中,上转换脉冲形状的选择如何影响从一组测量中获得的化学或物理见解。我们描述了一个通过第二光场映射振动相干性的时域图,并在文献中几种流行和新兴方法的背景下给出了这种映射或上转换过程发生的影响。重点放在宽带频域测量上,其中上转换脉冲的选择增强或限制了 SFG 光谱中包含的信息。我们最后提出了一种使用脉冲整形方法进行 SFG 上转换的灵活方法,并提供了一个简单的设计和优化相关仪器的指南。