首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The high voltage system with pressure and temperature corrections for the novel MPGD-based photon detectors of COMPASS RICH-1
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The high voltage system with pressure and temperature corrections for the novel MPGD-based photon detectors of COMPASS RICH-1

机译:具有压力和温度校正的高压系统,用于罗比-1的新型MPGD的光子探测器

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The novel MPGD-based photon detectors of COMPASS RICH-1 consist of large-size hybrid MPGDs with multilayer architecture including two layers of Thick-GEMs and a bulk resistive MicroMegas. The top surface of the first THGEM is coated with a CsI film which also acts as photo-cathode. These detectors have been successfully in operation at COMPASS since 2016. Concerning bias-voltage supply, the Thick-GEMs are segmented in order to reduce the energy released in case of occasional discharges, while the MicroMegas anode is segmented into pads individually biased with positive voltage while the micromesh is grounded. In total, there are about ten different electrode types and more than 20000 electrodes supplied by more than 100 HV channels, where appropriate correlations among the applied voltages are required for the correct operation of the detectors. Therefore, a robust control system is mandatory, implemented by a custom designed software package, while commercial power supply units are used. This sophisticated control system allows to protect the detectors against errors by the operator, to monitor and log voltages and currents at 1 Hz rate, and automatically react to detector misbehavior. In addition, a voltage compensation system has been developed to automatically adjust the biasing voltage according to environmental pressure and temperature variations, to achieve constant gain over time. This development answers to a more general need. In fact, voltage compensation is always a requirement for the stability of gaseous detectors and its need is enhanced in mull-layer ones.In this paper, the HV system and its performance are described in details, as well as the stability of the novel MPGD-based photon detectors during the physics data taking at COMPASS.
机译:Compass Rich-1的新型MPGD的光子探测器由具有多层架构的大型混合MPGD组成,包括两层厚宝石和散装电阻MicroMegas。第一THGEM的顶表面涂有CSI膜,其也充当光阴极。从2016年以来,这些探测器已经成功地运行。关于偏压供应,厚宝石被分割,以便在偶尔放电的情况下减少释放的能量,而MicroMegas阳极被分割成具有正电压的焊盘。微麦接地。总共有大约10个不同的电极类型和超过100 HV通道提供的20000多个电极,其中施加电压之间的适当相关性用于检测器的正确操作。因此,强制控制系统是强制性的,由定制设计的软件包实现,而使用商业电源单元。这种复杂的控制系统允许通过操作员保护探测器免受误差,以以1 Hz速率监测和记录电压和电流,并自动对检测器不当行为作出反应。另外,已经开发了一种电压补偿系统以根据环境压力和温度变化自动调节偏置电压,以实现恒定的增益。这种发展答案更普遍需要。实际上,电压补偿始终是气态探测器稳定性的要求,其需要在Mull层中增强。本文,HV系统及其性能详细描述,以及新的MPGD的稳定性基于物理数据在罗盘的物理数据期间被基于光子探测器。

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