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A closed-loop pump-driven wire-guided flow jet for ultrafast spectroscopy of liquid samples

机译:闭环泵驱动的线引导射流,用于液体样品的超快光谱

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摘要

We describe the design and provide the results of the full characterization of a closed-loop pump-driven wire-guided flow jet system. The jet has excellent optical quality with a wide range of liquids spanning from alcohol to water based solutions, including phosphate buffers used for biological samples. The thickness of the jet film varies depending on the flow rate between 90 μm and 370 μm. The liquid film is very stable, and its thickness varies only by 0.76% under optimal conditions. Measured transmitted signal reveals a long term optical stability (hours) with a RMS of 0.8%, less than the overall noise of the spectroscopy setup used in our experiments. The closed loop nature of the overall jet design has been optimized for the study of precious biological samples, in limited volumes, to remove window contributions from spectroscopic observables. This feature is particularly important for femtosecond studies in the UV range.
机译:我们描述了设计并提供了闭环泵驱动的线引导射流系统的完整表征结果。该喷射器具有出色的光学质量,适用于从酒精到水基溶液的各种液体,包括用于生物样品的磷酸盐缓冲液。喷射膜的厚度根据90μm至370μm之间的流速而变化。液膜非常稳定,在最佳条件下其厚度仅变化0.76%。测得的传输信号显示出长期的光学稳定性(小时),RMS为0.8%,低于我们实验中使用的光谱仪的总噪声。整体射流设计的闭环性质已经过优化,可用于有限体积的珍贵生物样品的研究,以消除光谱可观察物的窗口影响。此功能对于在紫外线范围内进行飞秒研究特别重要。

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