论文标题
开发用于无机闪烁体的硅光型电源的多通道电源
Development of a multi-channel power supply for silicon photo-multipliers used with inorganic scintillators
论文作者
论文摘要
当前的研发项目的动机基于绝地国际合作的要求,旨在测量存储环中带电粒子的电偶极矩(EDM)。这种实验中最重要的元素之一将是基于模块化无机闪烁体(Lyso Crystal)热量的特殊设计的偏光仪。硅光乘数(sipms)读取了量热计模块。本文介绍了偏光仪模块的多通道电源的开发,为sipms提供了非常稳定且干净的偏置电压。为了确保SIPM与基于晶体的热量计模块的最佳性能并确保量热计稳定性水平,必须通过电源满足几种质量要求。此外,需要提供包括通过网络的遥控器,输出电压的渐变,测量和发送有关其输出电压和电流的信息等。所获得的结果表明,满足了绝地武士极性计的目标。开发的硬件将在使用sipms的其他基础和应用研究,医学诊断技术和行业的其他领域中很有用。
The motivation of the current R&D project is based upon the requirements of the JEDI international collaboration aiming to measure Electric Dipole Moments (EDMs) of charged particles in storage rings. One of the most important elements of such an experiment will be a specially designed polarimeter with the detection system based on a modular inorganic scintillator (LYSO crystal) calorimeter. The calorimeter modules are read out by Silicon Photo Multipliers (SiPMs). This paper describes the development of a multi-channel power supply for the polarimeter modules, providing very stable and clean bias voltages for SiPMs. In order to ensure the best possible performance of SiPMs in conjunction with the crystal-based calorimeter modules and to guarantee the required level of calorimeter stability, several quality requirements have to be met by the power supply. Additionally, it is required to provide features including remote control via the network, ramping of the output voltage, measuring and sending the information about its output voltages and currents, etc. The obtained results demonstrate that the goals for the JEDI polarimeter are met. The developed hardware will be useful in other fields of fundamental and applied research, medical diagnostic techniques and industry, where SiPMs are used.