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Multiple-photon disambiguation on stripline-anode Micro-Channel Plates

机译:带状阳极微通道板上的多光子消歧

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摘要

Large-Area Picosecond Photo-Detectors (LAPPDs) show great potential for expanding the performance envelope of Micro-Channel Plates (MCPs) to areas of up to 20 × 20 cm and larger. Such scaling introduces new challenges, including how to meet the electronics readout burden of ever larger area MCPs. One solution is to replace the traditional grid anode used for readout with a microwave stripline anode, thus allowing the channel count to scale with MCP width rather than area. However, stripline anodes introduce new issues not commonly dealt with in grid-anodes, especially as their length increases. One of these issues is the near simultaneous arrival of multiple photons on the detector, creating possible confusion about how to reconstruct their arrival times and positions. We propose a maximum a posteriori solution to the problem and verify its performance in simulated scintillator and water-Cherenkov detectors.
机译:大面积皮秒光电检测器(LAPPD)具有巨大的潜力,可以将微通道板(MCP)的性能范围扩展到最大20×20 cm或更大的区域。这种缩放带来了新的挑战,包括如何满足越来越大面积的MCP的电子读出负担。一种解决方案是用微波带状线阳极代替用于读出的传统栅格阳极,从而允许通道数根据MCP宽度而不是面积进行缩放。但是,带状线阳极引入了栅阳极中通常不处理的新问题,尤其是当其长度增加时。这些问题之一是多个光子几乎同时到达探测器,从而使人们对如何重构其到达时间和位置产生了困惑。我们提出该问题的最大后验解,并验证其在模拟闪烁体和水切伦科夫探测器中的性能。

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