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Photodetectors and front-end electronics for the LHCb RICH upgrade

机译:用于LHCb RICH升级的光电探测器和前端电子设备

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The RICH detectors of the LHCb experiment provide identification of hadrons produced in high energy proton-proton collisions in the LHC at CERN over a wide momentum range (2-100 GeV/c). Cherenkov light is collected on photon detector planes sensitive to single photons. The RICH will be upgraded (in 2019) to read out every bunch crossing, at a rate of 40 MHz. The current hybrid photon detectors (HPD) will be replaced with multi-anode photomultiplier tubes (customisations of the Hamamatsu R11265 and the H12699 MaPMTs). These 8x8 pixel devices meet the experimental requirements thanks to their small pixel size, high gain, negligible dark count rate (~50 Hz/cm2) and moderate cross-talk. The measured performance of several tubes is reported, together with their long-term stability. A new 8-channel front-end chip, named CLARO, has been designed in 0.35 (μm CMOS AMS technology for the MaPMT readout. The CLARO chip operates in binary mode and combines low power consumption (~1 mW/Ch), wide bandwidth (baseline restored in ≤25 ns) and radiation hardness. A 12-bit digital register permits the optimisation of the dynamic range and the threshold level for each channel and provides tools for the on-site calibration. The design choices and the characterization of the electronics are presented.
机译:LHCb实验的RICH探测器可以在宽动量范围(2-100 GeV / c)范围内识别在CERN的LHC中高能质子-质子碰撞中产生的强子。切伦科夫光聚集在对单个光子敏感的光子检测器平面上。 RICH(将在2019年进行升级)以40 MHz的速率读出每个束交点。当前的混合光子探测器(HPD)将被多阳极光电倍增管(Hamamatsu R11265和H12699 MaPMT的定制)取代。这些8x8像素设备具有较小的像素尺寸,高增益,可忽略的暗计数率(〜50 Hz / cm2)和适度的串扰,因此满足了实验要求。报告了几根管的测量性能及其长期稳定性。一种新型的8通道前端芯片名为CLARO,已设计用于0.35(μmCMOS AMS技术,用于MaPMT读数)。CLARO芯片以二进制模式运行,并具有低功耗(〜1 mW / Ch),宽带宽(在≤25ns内恢复基线)和辐射硬度。12位数字寄存器可优化每个通道的动态范围和阈值水平,并提供用于现场校准的工具。电子产品介绍。

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