The Cosmic Ray Tagger system of the ICARUS detector at Fermilab

F. Poppi
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引用次数: 1

Abstract

The goal of the Short Baseline Neutrino program at Fermilab is to confirm, or definitely rule out, the existence of sterile neutrinos at the eV mass scale. The program searches for 𝜈 𝑒 appearance and 𝜈 𝜇 disappearance signals from the 𝜈 𝜇 → 𝜈 𝑒 oscillation in the Booster Neutrino Beamline. Neutrino interactions will be observed by two Liquid Argon Time Projection Chamber detectors at near (100 m) and far (600 m) positions from the neutrino source. The Far Detector (ICARUS T600) is a high granularity uniform self-triggering detector with 3D imaging and calorimetric capabilities allowing to reconstruct ionizing events with complex topology. ICARUS T600 is located on surface. A 4 𝜋 Cosmic Ray Tagger system was installed in order to mitigate the background induced by cosmic muons. The Cosmic Ray Tagger will identify muons crossing the detector with a resolution of few ns during the 1 ms drift time window of the Time Projection Chamber. In this paper an overview of the Cosmic Ray Tagger system, its role and performances as a tagger system are presented.
费米实验室ICARUS探测器的宇宙射线标记系统
费米实验室的短基线中微子项目的目标是确认,或者明确排除,在eV质量尺度上无菌中微子的存在。该程序在增强型中微子束线中从振荡的∕∕∕∕∕𝑒中搜索∕∕𝑒出现和∕∕消失信号。中微子相互作用将由两个液态氩时间投影室探测器在距离中微子源近(100米)和远(600米)的位置观察。远端探测器(ICARUS T600)是一种高粒度均匀自触发探测器,具有3D成像和量热功能,可以重建具有复杂拓扑结构的电离事件。ICARUS T600位于地面。为了减轻宇宙介子引起的背景效应,安装了一个4射线Tagger系统。在时间投影室的1毫秒漂移时间窗口内,宇宙射线标记器将以几纳秒的分辨率识别穿过探测器的μ子。本文概述了宇宙射线标记系统,介绍了它作为标记系统的作用和性能。
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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