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1.
Measurement of the background in the CMS muon detector in ${p}{p}$-collisions at $\sqrt{s} = 13$ $\,\text {Te}\hspace{-.08em}\text {V}$ / CMS Muon Collaboration
The CMS detector, including its muon system, has been operating at the CERN LHC in increasingly challenging conditions for about 15 years. The muon detector was designed to provide excellent triggering and track reconstruction for muons produced in proton–proton collisons at an instantaneous luminosity ($\mathcal {L}$) of $1 \times 10^{34}$ cm$^{-2}$s$^{-1}$. [...]
2024 - 43 p. - Published in : Eur. Phys. J. C 84 (2024) 955 Fulltext: PDF;
2.
Performance of the CMS muon trigger system in proton-proton collisions at $\sqrt{s} = $ 13 TeV / CMS Collaboration
The muon trigger system of the CMS experiment uses a combination of hardware and software to identify events containing a muon. During Run 2 (covering 2015-2018) the LHC achieved instantaneous luminosities as high as 2 $\times $ 10$^{34}$ cm$^{-2}$s$^{-1}$ while delivering proton-proton collisions at $\sqrt{s} = $ 13 TeV. [...]
arXiv:2102.04790; CMS-MUO-19-001; CERN-EP-2021-013; CMS-MUO-19-001-003.- Geneva : CERN, 2021 - 52 p. - Published in : JINST 16 (2021) P07001 Fulltext: 2102.04790 - PDF; CMS-MUO-19-001-arXiv - PDF; Fulltext from Publisher: PDF; External links: Additional information for the analysis; CMS AuthorList
3.
Performance of the CMS Level-1 trigger in proton-proton collisions at $\sqrt{s} = $ 13 TeV / CMS Collaboration
At the start of Run 2 in 2015, the LHC delivered proton-proton collisions at a center-of-mass energy of 13 TeV. During Run 2 (years 2015-2018) the LHC eventually reached a luminosity of 2.1 $\times $ 10$^{34} $ cm$^{-2}$s$^{-1}$, almost three times that reached during Run 1 (2009-2013) and a factor of two larger than the LHC design value, leading to events with up to a mean of about 50 simultaneous inelastic proton-proton collisions per bunch crossing (pileup). [...]
arXiv:2006.10165; CMS-TRG-17-001; CERN-EP-2020-065; CMS-TRG-17-001-003.- Geneva : CERN, 2020-10-19 - 63 p. - Published in : JINST 15 (2020) P10017 Fulltext: CMS-TRG-17-001-arXiv - PDF; 2006.10165 - PDF; Fulltext from Publisher: PDF; Fulltext from publisher: PDF; External links: Additional information for the analysis; CMS AuthorList
4.
Performance of the CMS muon detector and muon reconstruction with proton-proton collisions at $\sqrt{s}=$ 13 TeV / CMS Collaboration
The CMS muon detector system, muon reconstruction software, and high-level trigger underwent significant changes in 2013-2014 in preparation for running at higher LHC collision energy and instantaneous luminosity. The performance of the modified system is studied using proton-proton collision data at center-of-mass energy $\sqrt{s}=$ 13 TeV, collected at the LHC in 2015 and 2016. [...]
arXiv:1804.04528; CMS-MUO-16-001; CERN-EP-2018-058; CMS-MUO-16-001-003.- Geneva : CERN, 2018-06-19 - 53 p. - Published in : JINST 13 (2018) P06015 Fulltext: 1804.04528 - PDF; openaccess_Sirunyan_2018_J._Inst._13_P06015 - PDF; Fulltext from Publisher: PDF; External links: Additional information for the analysis; CMS AuthorList
5.
Boosted Decision Trees in the Level-1 Muon Endcap Trigger at CMS / CMS Collaboration
The first implementation of a Machine Learning Algorithm inside a Level-1 trigger system at the LHC is presented. The Endcap Muon Track Finder (EMTF) at CMS uses Boosted Decision Trees (BDTs) to infer the momentum of muons in the forward region of the detector, based on 25 different variables [...]
CMS-CR-2017-357.- Geneva : CERN, 2017 - 6 p. - Published in : J. Phys.: Conf. Ser. 1085 (2018) 042042 Fulltext: PDF; External link: Fulltext
In : 18th International Workshop on Advanced Computing and Analysis Techniques in Physics Research, Seattle, WA, USA, 21 - 25 Aug 2017, pp.042042
6.
Boosted decision trees in the CMS Level-1 endcap muon trigger / CMS Collaboration
The first implementation of Boosted Decision Trees (BDTs) inside a Level-1 trigger system at the LHC is presented. The Endcap Muon Track Finder (EMTF) at CMS uses BDTs to infer the momentum of muons in the forward region of the detector, based on 25 different variables. [...]
CMS-CR-2017-361.- Geneva : CERN, 2017 - 5 p. - Published in : PoS TWEPP-17 (2017) 143 Fulltext: PDF; External link: PoS Server
In : Topical Workshop on Electronics for Particle Physics, Santa Cruz, Ca, United States Of America, 11 - 15 Sep 2017, pp.143
7.
The Triple GEM Detector Control System for CMS forward muon spectrometer upgrade / Ahmed, W (NCP, Islamabad) ; Abbaneo, D (CERN) ; Abbrescia, M (INFN, Bari ; Bari Polytechnic) ; Abdelalim, A A (British U. in Egypt) ; Akl, M Abi (Texas A&M; U. Qatar, Doha) ; Acosta, D (Florida U.) ; Ahmad, A (NCP, Islamabad) ; Ahmed, W (British U. in Egypt) ; Aleksandrov, A (Sofiya, Inst. Nucl. Res.) ; Aly, R (British U. in Egypt) et al. /CMS muon
The CMS experiment at LHC will upgrade its forward muon spectrometer by incorporating Triple-GEM detectors. This upgrade referred to as GEM Endcap (GE1/1), consists of adding two back-to-back Triple-GEM detectors in front of the existing Cathode Strip Chambers (CSC) in the innermost ring of the endcap muon spectrometer. [...]
2017 - 15 p. - Published in : JINST 12 (2017) P02003
8.
Electronics for CMS Endcap Muon Level-1 Trigger System Phase-1 and HL LHC Upgrades Summary / Madorsky, Alexander (Florida U.) /CMS Collaboration
To accommodate high-luminosity LHC operation at 13 TeV collision energy, the CMS Endcap Muon Level-1 Trigger system had to be significantly modified. To provide the best track reconstruction, the trigger system must now import all available trigger primitives generated by Cathode Strip Chambers and by certain other subsystems, such as Resistive Plate Chambers (RPC). [...]
CMS-CR-2017-132.- Geneva : CERN, 2017 - 7 p. - Published in : JINST 12 (2017) C07010 Fulltext: PDF;
In : Instrumentation for Colliding Beam Physics, Novosibirsk, Russia, 27 Feb - 3 Mar 2017, pp.C07010
9.
R&D on a new type of micropattern gaseous detector: The Fast Timing Micropattern detector / CMS Collaboration
Micropattern gaseous detectors (MPGD) underwent significant upgrades in recent years, introducing resistive materials to build compact spark-protected devices. Exploiting this technology further, various features such as space and time resolution, rate capability, sensitive area, operational stability and radiation hardness can be improved. [...]
CMS-CR-2016-033.- Geneva : CERN, 2017 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 845 (2017) 313-317 Fulltext: PDF;
In : 14th Vienna Conference on Instrumentation, Vienna, Austria, 15 - 19 Feb 2016, pp.313-317
10.
Physics motivations and expected performance of the CMS muon system upgrade with triple-GEM detectors / Venditti, Rosamaria (Bari U. ; INFN, Bari) ; Abbaneo, Duccio (CERN) ; Abbrescia, Marcello (Bari U. ; INFN, Bari) ; Aleksandrov, Andrey B (Lebedev Inst.) ; Benussi, Luigi (Frascati) ; Beni, Noemi (KLTE-ATOMKI) ; Bianco, Stefano (Frascati) ; Calabria, Cesare (Bergamo U. ; INFN, Pavia) ; Caponero, Michele (Frascati) ; Hernandez, Alfredo Martin Castaneda (CERN) et al. /CMS GEM
For the LHC High Luminosity phase (HL-LHC) the CMS GEM Collaboration is planning to in- stall new large size triple-GEM detectors in the forward region of the muon system (1.5< j h |<2.2) of the CMS detector. The muon reconstruction with triple-GEM chambers information included have been successfully integrated in the official CMS software, allowing physics studies to be carried out. [...]
SISSA, 2015 - Published in : PoS EPS-HEP2015 (2015) 225 Fulltext: PDF; External link: Published version from PoS
In : European Physical Society Conference on High Energy Physics 2015, Vienna, Austria, 22 - 29 Jul 2015, pp.225

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