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首页> 外文期刊>Analytical Sciences >Broadband Sum Frequency Generation with Two Regenerative Amplifiers: Temporal Overlap of Femtosecond and Picosecond Light Pulses
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Broadband Sum Frequency Generation with Two Regenerative Amplifiers: Temporal Overlap of Femtosecond and Picosecond Light Pulses

机译:具有两个再生放大器的宽带总和频率生成:飞秒和皮秒光脉冲的时间重叠

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摘要

Sum frequency generation (SFG) spectroscopy is a valuable tool for studying interfaces such that the boundary between two adjoining phases can be probed with minimal interference from the adjacent bulk material. More recently, broad-bandwidth sum frequency generation (BBSFG) techniques are being explored. This technique using IR broad-bandwidth fs pulses overlapped with narrow-bandwidth ps pulses to obtain BBSFG spectra is described. In the BBSFG system design presented here, the fs pulse and the ps pulse that are generated in separate regenerative amplifiers are overlapped temporally. This temporal overlap process is discussed. In addition, images of the sum frequency response demonstrate its viability. The new approach in experimental design described here for this emerging technology, BBSFG, has application for studying time-dependent processes at interfaces that inherently produce low SFG signal levels such as air-aqueous interfaces.
机译:总和频率生成(SFG)光谱是研究界面的一种有价值的工具,这样就可以探测到两个相邻相之间的边界,而不会受到来自相邻散装材料的干扰。最近,正在探索宽带和频产生(BBSFG)技术。描述了使用IR宽带fs脉冲与窄带宽ps脉冲重叠以获得BBSFG光谱的技术。在此处介绍的BBSFG系统设计中,在单独的再生放大器中生成的fs脉冲和ps脉冲在时间上重叠。讨论了此时间重叠过程。此外,总和频率响应的图像显示了其可行性。此处描述的针对这种新兴技术的实验设计新方法BBSFG,可用于研究固有产生低SFG信号水平的接口(例如水界面)上与时间有关的过程。

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