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Flexible approach to vibrational sum-frequency generation using shaped near-infrared light

机译:使用形状近红外光的振动和频生成的灵活方法

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摘要

We describe a new approach that expands the utility of vibrational sum-frequency generation (vSFG) spectroscopy using shaped near-infrared (NIR) laser pulses. We demonstrate that arbitrary pulse shapes can be specified to match experimental requirements without the need for changes to the optical alignment. In this way, narrowband NIR pulses as long as 5.75 ps are readily generated, with a spectral resolution of about 2.5 cm(-1), an improvement of approximately a factor of 3 compared to a typical vSFG system. Moreover, the utility of having complete control over the NIR pulse characteristics is demonstrated through nonresonant background suppression from a metallic substrate by generating an etalon waveform in the pulse shaper. The flexibility afforded by switching between arbitrary NIR waveforms at the sample position with the same instrument geometry expands the type of samples that can be studied without extensive modifications to existing apparatuses or large investments in specialty optics. (C) 2018 Optical Society of America.
机译:我们描述了扩展振动和频(vSFG)的效用的新方法使用光谱学形的近红外(NIR)激光脉冲。我们证明,任意的脉冲形状可以指定,而无需改变光学对准匹配实验要求。以这种方式,窄带NIR只要5.75 ps的容易产生的脉冲,具有约2.5厘米(-1),相对于典型的vSFG系统的3个大致的因数的改善的光谱分辨率。此外,具有在NIR脉冲特性的完全控制的效用是通过从金属基材的非共振的背景抑制通过产生脉冲整形器的标准具波形证明。通过用相同的仪器几何样本位置任意NIR波形之间进行切换所提供的灵活性扩展了可无需大量修改现有装置或在专业光学大量投资进行研究的样品的类型。 (c)2018年光学学会。

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