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cerenkov Radiation as a UV and Visible Light Source for Time-Resolved Fluorescence

机译:切伦科夫辐射作为时间分辨荧光的紫外线和可见光源

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We demonstrate the first use of Cerenkov radiation for the measurement of fluorescence lifetimes. Relativistic β particles from the nuclear decay of ↑(90)Sr and↑(90)Y generate a spectral continuum in a quartz waveguide. light flashes of <100-ps duration are delivered simultaneously to a sample cell and a reference photomultiplier. A simple, digitally based cross-correlation signal processor allows extraction of the sample fluorescence decay kinetics without distortions which can result from the random excitation pulse sequence. We characterize both the pulse duration and the pulse intensity of the light that is emitted from the waveguide. Although the excitation intensity is very weak, we demonstrate that accurate lifetime measurements are possible with only a few hundred seconds of integration time. Tests on a variety of compounds illustrate the utility of the light source throughout the UV and blue regions of the spectrum. We also discuss future design improvements and potential applications of this new approach to time-resolved fluorescence.
机译:我们证明了切伦科夫辐射首次用于荧光寿命的测量。来自↑(90)Sr和↑(90)Y的核衰变的相对论β粒子在石英波导中产生光谱连续体。持续时间小于100 ps的闪光灯同时传送到样品池和参考光电倍增管。一个简单的,基于数字的互相关信号处理器允许提取样品荧光衰减动力学,而不会因随机激发脉冲序列而导致失真。我们表征了从波导发射的光的脉冲持续时间和脉冲强度。尽管激发强度非常弱,但我们证明,仅几百秒的积分时间就可以进行精确的寿命测量。对各种化合物的测试说明了光源在光谱的紫外线和蓝色区域中的效用。我们还将讨论未来设计的改进以及这种新方法对时间分辨荧光的潜在应用。

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