A Photon Detection System with Power and Signal over Fiber

H. Vieira de Souza
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引用次数: 1

Abstract

The Deep Underground Neutrino Experiment (DUNE) is a long baseline neutrino experiment for neutrino science and Beyond the Standard Model physics. The experiment will make use of four far detector (FD) modules, 1300 km away from the beam line, installed 1.5 km deep underground. The FD modules will consist of Liquid Argon Time Projection Chambers (LArTPC) with 17 kt of liquid argon (LAr) each, the largest ever attempted.In December 2020, the DUNE Collaboration proposed the Vertical Drift (VD) LArTPC technology with the aim to instrument the second FD module. In the VD the Photon Detection System (PDS), will be placed in the cathode in order to optimize light collection. However, the fact that the cathode will be biased at −300 kV for DUNE excludes the possibility to supply power and read out the PDS signals with conductive wires. The proposed solution is to use Power-over-Fiber (PoF) and Signal-over-Fiber (SoF). In this work the powering and analog signal readout of SiPM photodetectors using laser light transmitted over optical fibers are described, with emphasis in the development of the cryogenic analog optical transmitter to be used for SoF transmission. Results will be shown from the recent demonstration of this solution made at the CERN neutrino platform.
光纤供电和信号的光子探测系统
深地下中微子实验(DUNE)是中微子科学和超越标准模型物理学的长基线中微子实验。该实验将使用四个远距探测器(FD)模块,距离波束线1300公里,安装在地下1.5公里深处。FD模块将由液态氩时间投影室(LArTPC)组成,每个室含有17kt液态氩(LAr),这是有史以来最大的。2020年12月,DUNE合作提出了垂直漂移(VD) LArTPC技术,旨在对第二个FD模块进行测量。在VD中,光子探测系统(PDS)将被放置在阴极中,以优化光收集。然而,对于DUNE,阴极将在- 300 kV时偏置,这排除了用导线供电和读出PDS信号的可能性。建议的解决方案是使用光纤供电(PoF)和光纤信号(SoF)。本文介绍了利用光纤传输激光的SiPM光电探测器的供电和模拟信号读出,重点介绍了用于光纤传输的低温模拟光发射机的开发。结果将从最近在CERN中微子平台上进行的该解决方案的演示中显示出来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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