Emulsion detector for future experiment SHiP at CERN

Nina Konovalova, on behalf of the SHiP Collaboration
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引用次数: 1

Abstract

The new general-purpose fixed target experiment SHiP (Search for Hidden Particles) at the CERN SPS (Super Proton Synchrotron) is aimed at research in the field of Beyond Standard Model (BSM) physics and of tau-neutrino physics. The Emulsion Neutrino Detector will be one of the main elements in the SHiP detector design. It is intended for search for Dark Matter scattering on electrons of nuclear emulsion and for tau-neutrino and anti tau-neutrino direct observation, and study their properties and the cross section. The main source of both hidden particle and tau-neutrino event fluxes is the decay of charmed particles produced in the SHiP proton target. The detection of the production and decay of charmed hadrons in the target will be performed through nuclear emulsion films employed in the Emulsion Cloud Chamber target structure. The paper describes the basic principles of the SHiP neutrino emulsion detector and some measures for its optimization.

欧洲核子研究中心未来实验船用乳剂探测器
在欧洲核子研究中心(CERN)的超级质子同步加速器(SPS)上,新的通用固定目标实验船(寻找隐藏粒子)旨在研究超标准模型(BSM)物理和tau-中微子物理领域。乳化液中微子探测器将是SHiP探测器设计的主要组成部分之一。目的是寻找暗物质在核乳剂电子上的散射,对τ中微子和反τ中微子进行直接观测,研究它们的性质和截面。隐藏粒子和τ中微子事件通量的主要来源是SHiP质子靶中产生的粲粒子的衰变。利用乳化液云室靶结构中的核乳化液膜来检测靶中粲强子的产生和衰变。本文介绍了SHiP型微中子乳剂探测器的基本原理及优化措施。
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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