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Operational status of the Belle II Time-Of-Propagation counter readout and data acquisition system

机译:Belle II传播时间计数器读数和数据采集系统的运行状态

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The front-end electronics system for the Belle II Time-Of-Propagation (TOP) counter was fully installed in May 2016. The detector is a novel particle identification device for the barrel region, where Cherenkov ring images are reconstructed with precise timing information of each photon. The readout electronics need to have excellent timing performance for single photon detection. To exploit the benefit of high luminosity, the electronics must also be able to cope with a high input trigger rate (30 kHz) and have buffer memory which is deep enough to wait for a trigger decision (> 5 μs). The TOP electronics has switching capacitor arrays to sample waveforms with 2.7 GSample/s, which allows a timing resolution of 50 ps for a single photon signal. The programmable logic and the processing system are the effective implementation to meet these requirements, where flexible optimization and step-by-step development of readout logic are possible. The system has been successfully operated in the first accelerator commissioning runs with beam collisions in 2018, where the typical trigger rate was 500 Hz. Operation with a 20 kHz trigger rate was also tested.
机译:Belle II传播时间(TOP)计数器的前端电子系统已于2016年5月完全安装。该探测器是用于桶形区域的新型粒子识别设备,在该桶中,Cherenkov环形图像以精确的时间信息重建。每个光子。对于单光子检测,读出电子设备需要具有出色的定时性能。为了利用高亮度的优势,电子设备还必须能够应对高输入触发速率(30 kHz),并具有足够深的缓冲存储器,足以等待触发决策(> 5μs)。 TOP电子器件具有开关电容器阵列,以2.7 GSample / s的采样率采样波形,这为单个光子信号提供了50 ps的定时分辨率。可编程逻辑和处理系统是满足这些要求的有效实施,其中可以灵活地优化和逐步开发读出逻辑。该系统已在2018年的首次加速器试运行中成功运行,该试运行因光束碰撞而发生,典型触发频率为500 Hz。还测试了20 kHz触发速率的操作。

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