Precision timing for the High Luminosity Upgrade of CMS

R. Yohay
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引用次数: 3

Abstract

The projected proton beam intensity of the High Luminosity Large Hadron Collider (HL-LHC), slated to begin operation in 2026, will result in between 140 and 200 concurrent proton-proton interactions per 25 ns bunch crossing. The scientific program of the HL-LHC, which includes precision Higgs coupling measurements, measurements of vector boson scattering, and searches for new heavy or exotic particles, will benefit greatly from the enormous HL-LHC dataset. However, particle reconstruction and correct assignment to primary interaction vertices presents a formidable challenge to the LHC detectors that must be overcome in order to reap that benefit. Time tagging of minimum ionizing particles (MIPs) produced in LHC collisions with a resolution of 30 ps provides further discrimination of interaction vertices in the same 25 ns bunch crossing beyond spatial tracking algorithms. The Compact Muon Solenoid (CMS) Collaboration is pursuing two technologies to provide MIP time tagging for the HL-LHC detector upgrade: LYSO:Ce crystals read out by silicon photomultipliers (SiPMs) for low radiation areas and silicon low gain avalanche detectors (LGADs) for high radiation areas. This talk will motivate the need for a dedicated timing layer in the CMS upgrade, describe the two technologies and their performance, and present simulations showing the improvements in reconstructed observables afforded by four dimensional tracking.
CMS高亮度升级的精确定时
高亮度大型强子对撞机(HL-LHC)的预计质子束强度将在2026年开始运行,每25 ns束交叉将产生140到200个同时发生的质子-质子相互作用。HL-LHC的科学计划,包括精确的希格斯耦合测量,矢量玻色子散射测量,以及寻找新的重粒子或外来粒子,将极大地受益于HL-LHC庞大的数据集。然而,粒子重建和对主要相互作用顶点的正确分配对大型强子对撞机探测器来说是一个巨大的挑战,必须克服这个挑战才能获得好处。对LHC碰撞中产生的最小电离粒子(MIPs)进行30 ps分辨率的时间标记,可以在空间跟踪算法之外进一步区分相同25 ns束交叉中的相互作用顶点。紧凑介子螺线管(CMS)合作项目正在寻求两种技术,为HL-LHC探测器升级提供MIP时间标记:LYSO:由硅光电倍增管(SiPMs)读出的Ce晶体用于低辐射区域,硅低增益雪崩探测器(lgad)用于高辐射区域。本次演讲将激发对CMS升级中专用定时层的需求,描述这两种技术及其性能,并展示四维跟踪提供的重建可观测对象的改进模拟。
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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