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Error analysis of the rapid lifetime determination method for double-exponential decays and new windowing schemes

机译:双指数衰减快速寿命确定方法的误差分析和新的开窗方案

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The rapid lifetime determination method (RLD) is a mathematical technique for extremely rapid evaluations of lifetimes in exponential decays, It has been applied in luminescence microscopy and single-molecule lifetime evaluation. To date, the primary application has been in single-exponential evaluations. We present extensions of the method to double exponentials, Using Monte Carlo simulations, we assess the performance of both the double-exponential decay with known lifetimes and the double-exponential decay with unknown preexponential factors and lifetimes. Precision is evaluated as a function of the noise level (Poisson statistics), the ratios of the lifetimes, the ratios of their preexponential factors, and the fitting window. Optimum measurement conditions are determined. RLD is shown to work well over a wide range of practical experimental conditions. If the lifetimes are known, the preexponential factors can be determined with good precision even at low total counts (10(4)), With unknown preexponential factors and lifetimes, precisions decrease but are still acceptable. A new gating scheme (overlapped gating) is shown to offer improved precision for the case of a single-exponential decay, Theoretical predictions are tested against actual experimental data from a laser-based lifetime instrument. [References: 7]
机译:快速寿命确定方法(RLD)是一种用于快速评估指数衰减寿命的数学技术,已应用于发光显微镜和单分子寿命评估。迄今为止,主要应用是单指数评估。我们将方法扩展到双指数,使用蒙特卡洛模拟,我们评估了寿命已知的双指数衰减和未知指数前因数和寿命的双指数衰减的性能。精度是根据噪声水平(泊松统计),寿命比率,它们的指数前因数比率和拟合窗口进行评估的。确定最佳测量条件。 RLD在各种实际实验条件下均能很好地发挥作用。如果寿命是已知的,则即使在总计数较低的情况下,也可以以较高的精度确定预指数因子(10(4))。对于未知的预指数因子和寿命,精度会降低,但仍然可以接受。展示了一种新的选通方案(重叠选通),可以在单指数衰减的情况下提供更高的精度,并针对基于激光寿命仪器的实际实验数据对理论预测进行了测试。 [参考:7]

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