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Embedded readout electronics R&D for the large PMTs in the JUNO experiment

机译:嵌入式读出电子产品研发为朱诺实验中的大型PMTS

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摘要

Jiangmen Underground Neutrino Observatory (JUNO) is a next generation liquid scintillator neutrino experiment under construction phase in South China. Thanks to the anti-neutrinos produced by the nearby nuclear power plants, JUNO will be able to study the neutrino mass hierarchy, one of the open key questions in neutrino physics. One key ingredient for a successful measurement is to use high speed, high resolution sampling electronics located very close to the detector signal. Linearity in the response of the electronics is another important ingredient for the success of the experiment. During the initial design phase of the electronics, a custom design with the Front-End and Read-Out electronics located very close to the detector analog signal has been developed and successfully tested. The present paper describes the electronics structure and the first tests performed on the prototypes. The electronics prototypes have been tested and they show good linearity response, with a maximum deviation of 1.3% over the full dynamic range (1-1000 p.e.), fulfilling the JUNO experiment requirements.
机译:江门地下中微子天文台(JUNO)是南方施工阶段的下一代液体闪烁体中子实验。由于附近的核电站生产的反中微子,朱诺将能够研究中微子质量等级,其中中微子物理学的一个开放关键问题之一。成功测量的一个关键成分是使用高速,高分辨率采样电子设备非常接近检测器信号。在电子产品的反应中的线性是另一个重要成分,用于实验的成功。在电子设备的初始设计阶段,已经开发并成功地测试了具有非常接近检测器模拟信号的前端和读出电子设备的定制设计。本文介绍了电子结构和在原型上执行的第一个测试。电子原型已经过测试,它们显示出良好的线性响应,在全动态范围内最大偏差为1.3%(1-1000 p.E.),满足JUNO实验要求。

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