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Charge reconstruction in large-area photomultipliers

机译:大街光电塑件中的充电重建

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Large-area PhotoMultiplier Tubes (pmt) allow to efficiently instrument Liquid Scintillator (LS) neutrino detectors, where large target masses are pivotal to compensate for neutrinos' extremely elusive nature. Depending on the detector light yield, several scintillation photons stemming from the same neutrino interaction are likely to hit a single pmt in a few tens/hundreds of nanoseconds, resulting in several photoelectrons (pes) to pile-up at the pmt anode. In such scenario,the signal generated by each pe is entangled to the others, and an accurate pmt charge reconstruction becomes challenging. This manuscript describes an experimental method able to address the pmt charge reconstruction in the case of large pe pile-up, providing an unbiased charge estimator at the permille level up to 15 detected pes. The method is based on a signal filtering technique (Wiener filter) which suppresses the noise due to both pmt and readout electronics, and on a Fourier-based deconvolution able to minimize the influence of signal distortions - such as an overshoot. The analysis of simulated pmtwaveforms shows that the slope of a linear regression modeling the relation between reconstructed and true charge values improves from 0.769±0.001 (without deconvolution) to 0.989±0.001 (with deconvolution), where unitary slope implies perfect reconstruction. A C++ implementation of the charge reconstruction algorithm is available online at [1].
机译:大面积光电倍增管(PMT)允许有效地仪器液体闪烁体(LS)中微子探测器,其中大型目标质量是关键的,可以补偿中微子的极为难以捉摸的性质。根据探测器的光产率,来自相同中微子相互作用的几个闪烁光子可能会在几十/数百个纳秒中击中单个PMT,从而导致几个光电子(PES)在PMT阳极堆积。在这种情况下,每个PE产生的信号与其他PE纠缠在一起,并且准确的PMT电荷重建变得具有挑战性。该手稿描述了一种实验方法,该方法能够解决大型PE堆积的情况下解决PMT电荷重建,从而在高达15个检测到的PES的封底水平下提供无偏的电荷估计器。该方法基于信号滤波技术(Wiener滤波器),该技术抑制了由于PMT和读取电子产品而引起的噪声,以及基于傅立叶的反卷积能够最大程度地减少信号扭曲的影响(例如过冲)。对模拟PMTWaveForms的分析表明,线性回归建模重建和真实电荷值之间关系的斜率从0.769±0.001(无反转)提高到0.989±0.001(反向交流),在单位斜率上表示完美的重建。电荷重建算法的C ++实现可在线[1]获得。

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