用于HL-LHC的CMS 1级量热计触发器

Q3 Physics and Astronomy Instruments Pub Date : 2022-10-17 DOI:10.3390/instruments6040064
Piyush Kumar, B. Gomber
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引用次数: 0

摘要

高亮度大型强子对撞机(HL-LHC)为开创性的物理计划提供了一个机会,利用十年运行中4000 fb−1的综合亮度。大量的碰撞数据将有助于标准模型(SM)的高精度测量和对新的罕见物理现象的探索。200个质子-质子相互作用的恶劣环境对收集这些大型数据集构成了巨大挑战。HL-LHC CMS Level-1(L1)触发器,包括量热计触发器,将进行大规模升级,以应对高带宽和高堆积环境的挑战。L1触发器计划处理输出速率为750 kHz的非常高的带宽(~63 Tb/s),所需的延迟预算为12.5μs。量热计触发器旨在处理来自新型端盖检测器的高粒度信息,该检测器被称为高粒度量热计(HGCAL)和桶式量热计。HL-LHC触发器原型板配备了大型现代FPGA和高速光链路(~28 Gb/s),这有助于热量计触发器算法的并行快速计算。本文讨论了升级后的CMS一级量热计触发系统的拟议设计和预期性能。
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The CMS Level-1 Calorimeter Trigger for the HL-LHC
The High-Luminosity LHC (HL-LHC) provides an opportunity for a pioneering physics program to harness an integrated luminosity of 4000 fb−1 of ten years of operations. This large volume of collision data will help in high precision measurements of the Standard Model (SM) and the search for new and rare physics phenomena. The harsh environment of 200 proton–proton interactions poses a substantial challenge in the collection of these large datasets. The HL-LHC CMS Level-1 (L1) trigger, including the calorimeter trigger, will receive a massive upgrade to tackle the challenge of a high-bandwidth and high pileup environment. The L1 trigger is planned to handle a very high bandwidth (∼63 Tb/s) with an output rate of 750 kHz, and the desired latency budget is 12.5 μs. The calorimeter trigger aims to process the high-granular information from the new end-cap detector called the high-granularity calorimeter (HGCAL) and the barrel calorimeter. The HL-LHC trigger prototyped boards are equipped with large modern-day FPGAs and high-speed optical links (∼28 Gb/s), which helps in the parallel and rapid computation of the calorimeter trigger algorithms. This article discusses the proposed design and expected performance of the upgraded CMS Level-1 calorimeter trigger system.
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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