{"title":"在最高能量和强度的质子-质子对撞机上的精密电磁量热:CMS - ECAL在LHC Run 2上的性能及高亮度LHC的前景","authors":"A. Massironi","doi":"10.1109/NSSMIC.2015.7581771","DOIUrl":null,"url":null,"abstract":"The electromagnetic calorimeter (ECAL) of the Compact Muon Solenoid Experiment (CMS) started operating at the Large Hadron Collider (LHC) in Spring 2015 with proton-proton collisions at 13 TeV center-of-mass energy and at a reduced bunch spacing of 25 ns. The instantaneous luminosity during LHC Run 2 is expected to exceed the levels achieved in LHC Run 1 significantly. In this talk we present new reconstruction algorithms and calibration strategies to maintain the superb performance of the CMS ECAL under these challenging conditions. We will show first performance results from the 2015 data taking period and give an outlook on the foreseen performance for Run 2. The current Run 2 of LHC is expected to accumulate a few hundred inverse femtobarn of proton-proton collisions before LHC will be upgraded to provide an even higher instantaneous luminosity, referred to as High-Luminosity LHC (HL-LHC). HL-LHC is expected to provide a few inverse attobarn of integrated luminosity. This will result in even higher rates of simultaneous proton-proton collisions, called pile-up (PU), up to and exceeding 140 PU collisions. Likewise the physics event rates will increase further which requires upgrades to the readout and trigger electronics of the existing ECAL. We will briefly discuss the upgrade plans and present in detail the plans to combat the PU under these conditions. One promising technique is based on the very good time resolution the CMS ECAL provides. We present the current status of timing performance of the CMS ECAL, plans to improve this for the future and examples of how this can be used for PU mitigation.","PeriodicalId":106811,"journal":{"name":"2015 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC)","volume":"219 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2015-11-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Precision electromagnetic calorimetry at the highest energy and intensity proton-proton collider: CMS ECAL performance at LHC Run 2 and prospects for high luminosity LHC\",\"authors\":\"A. 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引用次数: 2
摘要
紧凑型介子电磁实验(CMS)的电磁量热计(ECAL)于2015年春季在大型强子对撞机(LHC)上开始运行,质子-质子对撞的质心能量为13 TeV,束间距减小为25 ns。LHC Run 2的瞬时光度预计将大大超过LHC Run 1的水平。在这次演讲中,我们提出了新的重建算法和校准策略,以保持CMS ECAL在这些具有挑战性的条件下的卓越性能。我们将展示2015年数据采集期的第一批业绩结果,并对Run 2的预期业绩进行展望。在LHC升级到更高的瞬时光度之前,目前LHC的第2次运行预计将积累几百个反向质子-质子碰撞,被称为高光度LHC (HL-LHC)。HL-LHC有望提供一些积分光度的逆函数。这将导致更高的同时质子-质子碰撞率,称为堆积(PU),高达并超过140次PU碰撞。同样,物理事件率将进一步提高,这需要升级现有ECAL的读出和触发电子设备。我们将简要讨论升级计划,并详细介绍在这些条件下对抗PU的计划。一个很有前途的技术是基于CMS ECAL提供的非常好的时间分辨率。我们介绍了CMS ECAL定时性能的现状,未来改进该性能的计划,以及如何将其用于PU缓解的示例。
Precision electromagnetic calorimetry at the highest energy and intensity proton-proton collider: CMS ECAL performance at LHC Run 2 and prospects for high luminosity LHC
The electromagnetic calorimeter (ECAL) of the Compact Muon Solenoid Experiment (CMS) started operating at the Large Hadron Collider (LHC) in Spring 2015 with proton-proton collisions at 13 TeV center-of-mass energy and at a reduced bunch spacing of 25 ns. The instantaneous luminosity during LHC Run 2 is expected to exceed the levels achieved in LHC Run 1 significantly. In this talk we present new reconstruction algorithms and calibration strategies to maintain the superb performance of the CMS ECAL under these challenging conditions. We will show first performance results from the 2015 data taking period and give an outlook on the foreseen performance for Run 2. The current Run 2 of LHC is expected to accumulate a few hundred inverse femtobarn of proton-proton collisions before LHC will be upgraded to provide an even higher instantaneous luminosity, referred to as High-Luminosity LHC (HL-LHC). HL-LHC is expected to provide a few inverse attobarn of integrated luminosity. This will result in even higher rates of simultaneous proton-proton collisions, called pile-up (PU), up to and exceeding 140 PU collisions. Likewise the physics event rates will increase further which requires upgrades to the readout and trigger electronics of the existing ECAL. We will briefly discuss the upgrade plans and present in detail the plans to combat the PU under these conditions. One promising technique is based on the very good time resolution the CMS ECAL provides. We present the current status of timing performance of the CMS ECAL, plans to improve this for the future and examples of how this can be used for PU mitigation.