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Determination of photophysical parameters from photon arrival time trajectories in single molecule fluorescence spectroscopy

机译:在单分子荧光光谱法中根据光子到达时间轨迹确定光物理参数

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摘要

Triplet blinking is a phenomenon observed commonly in single molecule fluorescence spectroscopy. At high to moderate excitation intensities one can distinguish bright (on) and dark (off) periods in the fluorescence intensity trajectory caused by sojourns into the nonemissive triplet state. In this work, we focus on triplet blinking of an immobilized molecule in the low excitation regime, where a threshold between on and off intensity levels cannot be set, and, therefore, a standard on/off analysis of fluorescence intensity trajectories is not possible. In the low excitation regime triplet blinking parameters can be recovered from photon arrival time trajectories, i.e., records of individual photon arrival time. We use computer-generated data to compare the recovery of the triplet blinking parameters from the intensity correlation function (ICF) and the histogram of interarrival time. We have found that the ICF offers a better statistics for the recovery of the triplet blinking parameters. (C) 2005 American Institute of Physics.
机译:三重闪烁是在单分子荧光光谱中通常观察到的现象。在高到中等的激发强度下,人们可以分辨出停留在非发光三重态下的荧光强度轨迹中的亮(开)和暗(关)周期。在这项工作中,我们专注于固定的分子在低激发态下的三重闪烁,其中无法设置开和关强度水平之间的阈值,因此,不可能对荧光强度轨迹进行标准开/关分析。在低激发态下,可以从光子到达时间轨迹,即各个光子到达时间的记录中恢复三重态闪烁参数。我们使用计算机生成的数据来比较强度相关函数(ICF)和到达时间直方图的三联闪烁参数的恢复。我们发现,ICF为三联体闪烁参数的恢复提供了更好的统计信息。 (C)2005美国物理研究所。

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