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A detailed study of FDIRC prototype with waveform digitizing electronics in cosmic ray telescope using 3D tracks

机译:使用3D轨道的宇宙射线望远镜中带有波形数字化电子设备的FDIRC原型的详细研究

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摘要

We present a detailed study of a novel Cherenkov imaging detector called the Focusing DIRC (FDIRC) with waveform digitizing electronics. In this study, the FDIRC prototype has been instrumented with seven Hamamatsu H-8500 MaPMTs. Waveforms from 384 pixels are digitized with waveform sampling electronics based on the BLAB2 ASIC, operating at a sampling speed of ~2.5 GSa/s. The FDIRC prototype was tested in a large cosmic ray telescope (CRT) providing 3D muon tracks with ~1.5 mrad angular resolution and muon energy of E_(muon) > 1.6 GeV. In this study we provide a detailed analysis of the tails in the Cherenkov angle distribution as a function of various variables, compare experimental results with simulation, and identify the major contributions to the tails. We demonstrate that to see the full impact of these tails on the Cherenkov angle resolution, it is crucial to use 3D tracks, and have a full understanding of the role of reconstruction ambiguities. These issues could not be fully explored in previous FDIRC studies where the beam was perpendicular to the quartz radiator bars. This work is relevant for the final FDIRC prototype of the PID detector at SuperB, which will be tested this year in the CRT setup.
机译:我们对带有波形数字化电子设备的新型Cherenkov成像探测器(称为聚焦DIRC(FDIRC))进行了详细研究。在这项研究中,FDIRC原型已经配备了七个Hamamatsu H-8500 MaPMT。 384个像素的波形通过基于BLAB2 ASIC的波形采样电子设备进行数字化处理,采样速度约为2.5 GSa / s。 FDIRC原型在大型宇宙射线望远镜(CRT)中进行了测试,该望远镜提供3D介子轨道,角分辨率约为1.5毫拉德,μ子能量E_(μon)> 1.6 GeV。在这项研究中,我们对作为不同变量的函数的Cherenkov角分布中的尾部进行了详细分析,将实验结果与模拟进行比较,并确定了对尾部的主要贡献。我们证明,要看到这些尾部对切伦科夫角分辨率的完整影响,使用3D轨道至关重要,并且要充分理解重建歧义的作用。这些问题在以前的FDIRC研究中无法完全探究,在该研究中,光束垂直于石英辐射棒。这项工作与SuperB上PID探测器的最终FDIRC原型有关,该原型将在今年在CRT装置中进行测试。

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