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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >A pixelated charge readout for Liquid Argon Time Projection Chambers
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A pixelated charge readout for Liquid Argon Time Projection Chambers

机译:用于液体氩时间投影室的像素化电荷读出

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摘要

Liquid Argon Time Projection Chambers (LArTPCs) are ideally suited to perform longbaseline neutrino experiments aiming to measure CP violation in the lepton sector, and determine the ordering of the three neutrino mass eigenstates. LArTPCs have used projective wire readouts for charge detection since their conception in 1977. However, wire readouts are notoriously fragile and therefore a limiting factor in the design of any large mass detectors. Furthermore, a wire readout also introduces intrinsic ambiguities in event reconstruction. Within the ArgonCube concept - the liquid argon component of the DUNE near detector - we are developing a pixelated charge readout for LArTPCs. Pixelated charge readout systems represent the single largest advancement in the sensitivity of LArTPCs. They are mechanically robust and provide direct 3D readout, serving to minimise reconstruction ambiguities, enabling more advanced triggers, further reducing event pile-up and improving background rejection. This article presents first results from a pixelated LArTPC prototype built and operated in Bern.
机译:液体氩时间投影室(Lartpcs)非常适合于执行旨在测量Lepton扇区的CP违规的LongBaseline Negrino实验,并确定三个中微子质量特征的排序。 Lartpcs在1977年的概念以来已经使用投影线读数进行电荷检测。然而,电线读数是臭名昭着的,因此是任何大型质量探测器的设计中的限制因素。此外,电线读数还介绍了事件重建中的内在模糊。在argoncube概念中 - Dune靠近探测器的液体氩分量 - 我们正在开发Lartpcs的像素化电荷读数。像素化电荷读数系统代表Lartpcs敏感性的最大增强。它们是机械稳健的,提供直接的3D读数,用于尽量减少重建歧义,从而实现更先进的触发器,进一步减少事件堆积和改善背景抑制。本文介绍了在伯尔尼中构建和操作的像素化Lartpc原型的首先结果。

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  • 作者单位

    University of Texas Arlington TX U.S.A.;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    CERN Geneva Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

    Laboratory for High Energy Physics Albert Einstein Center for Fundamental Physics University of Bern Bern Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Neutrino detectors; Particle tracking detectors; Time projection chambers; Particle identification methods;

    机译:中微子探测器;粒子跟踪探测器;时间投影室;粒子识别方法;

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