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Application of Matched-Filter Concepts to Unbiased Selection of Data in Pump-Probe Experiments with Free Electron Lasers

机译:匹配滤波器概念在自由电子激光泵浦探测实验中数据的无偏选择中的应用

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Pump-probe experiments are commonly used at Free Electron Lasers (FEL) to elucidate the femtosecond dynamics of atoms, molecules, clusters, liquids and solids. Maximizing the signal-to-noise ratio of the measurements is often a primary need of the experiment, and the aggregation of repeated, rapid, scans of the pump-probe delay is preferable to a single long-lasting scan. The limited availability of beamtime makes it impractical to repeat measurements indiscriminately, and the large, rapid flow of single-shot data that need to be processed and aggregated into a dataset, makes it difficult to assess the quality of a measurement in real time. In post-analysis it is then necessary to devise unbiased criteria to select or reject datasets, and to assign the weight with which they enter the analysis. One such case was the measurement of the lifetime of Intermolecular Coulombic Decay in the weakly-bound neon dimer. We report on the method we used to accomplish this goal for the pump-probe delay scans that constitute the core of the measurement; namely we report on the use of simple auto- and cross-correlation techniques based on the general concept of “matched filter”. We are able to unambiguously assess the signal-to-noise ratio ( SNR ) of each scan, which then becomes the weight with which a scan enters the average of multiple scans. We also observe a clear gap in the values of SNR , and we discard all the scans below a SNR of 0.45. We are able to generate an average delay scan profile, suitable for further analysis: in our previous work we used it for comparison with theory. Here we argue that the method is sufficiently simple and devoid of human action to be applicable not only in post-analysis, but also for the real-time assessment of the quality of a dataset.
机译:自由电子激光器(FEL)通常使用泵浦探测实验来阐明原子,分子,簇,液体和固体的飞秒动力学。最大化测量的信噪比通常是该实验的主要需求,并且对泵浦探测延迟进行重复,快速,多次扫描的汇总要优于单个长期扫描。波束时间的有限可用性使得不加选择地重复进行测量是不切实际的,并且需要处理并将其汇总到数据集中的单次数据量大而快速,这使得难以实时评估测量质量。然后,在分析后,有必要设计出无偏的标准来选择或拒绝数据集,并指定它们进入分析所用的权重。一种这样的情况是在弱结合的霓虹二聚体中测量分子间库伦衰变的寿命。我们报告了用于完成构成测量核心的泵浦探头延迟扫描的目标的方法。也就是说,我们基于“匹配滤波器”的一般概念报告了简单的自相关和互相关技术的使用。我们能够明确评估每次扫描的信噪比(SNR),然后将其变为权重,使扫描成为多次扫描的平均值。我们还观察到SNR值有明显的差距,并且丢弃了所有低于SNR 0.45的扫描。我们能够生成适合于进一步分析的平均延迟扫描曲线:在我们以前的工作中,我们将其用于与理论进行比较。在这里,我们认为该方法足够简单,并且没有人为干预,不仅可以应用于后分析,而且还可以实时评估数据集的质量。

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