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Two-dimensional visualization of fluorescence lifetimes by use of a picosecond laser and a streak camera

机译:使用皮秒激光和条纹相机对荧光寿命进行二维可视化

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摘要

Two-dimensional distributions of the effective lifetime of the fluorescence emission induced by short-pulsed laser radiation are obtained from two-dimensional images recorded with a streak camera and a charge-coupled device by means of a separation algorithm method (SAM). In theory, the best response with respect to noise is obtained for lifetimes corresponding to a range of pixels of 5-50 in the CCD, that is, 5-50 ps at the fastest streak speed. In experiments the SAM is compared with pure time-resolved measurements, and it is used for two-dimensional lifetime evaluation. The laser-pulse duration is 25 ps, and the lower limit of the lifetime resolution as used in the experiments is estimated to be 200-250 ps. The results demonstrate the possibility of performing pattern recognition independently of the relative distribution of emission intensity between regions of different fluorescence lifetimes. The technique is demonstrated for static objects but can in principle be extended to nonstationary objects if two detectors are used. (C) 1998 Optical Society of America. [References: 30]
机译:由短脉冲激光辐射引起的荧光发射的有效寿命的二维分布是通过条纹算法和电荷耦合器件通过分离算法方法(SAM)从记录的二维图像中获得的。从理论上讲,对于噪声的最佳响应是在对应于CCD中5-50像素范围(即最快条纹速度的5-50 ps)的寿命内获得的。在实验中,将SAM与纯时间分辨测量值进行比较,并将其用于二维寿命评估。激光脉冲持续时间为25 ps,实验中使用的寿命分辨率的下限估计为200-250 ps。结果证明了独立于不同荧光寿命的区域之间的发射强度的相对分布而进行模式识别的可能性。该技术已针对静态物体进行了演示,但原则上,如果使用两个检测器,则可以扩展到非平稳物体。 (C)1998年美国眼镜学会。 [参考:30]

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