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1.
Study of the performance of RPC system installed at the CMS experiment / SHOPOVA, Mariana (Sofiya, Inst. Nucl. Res.) ; Hadjiiska, Roumyana Mileva (Sofiya, Inst. Nucl. Res.) /CMS Collaboration
The CMS (Compact Muon Solenoid) experiment is a general purpose detector, located at the CERN Large Hadron Collider (LHC). It has a muon spectrometer equipped with a redundant system composed of three different detector technologies - Resistive Plate Chambers (RPCs) and Drift Tubes (DTs) in the barrel and RPC and Cathode Strip Chambers (CSCs) in the endcap region. [...]
CMS-CR-2016-289.- Geneva : CERN, 2017 - 6 p. - Published in : C. R. Acad. Bulg. Sci.: 70 (2017) , no. 1, pp. 41-44 Fulltext: CR2016_289 - PDF; H_01-05 - PDF;
2.
Detector performance and stability of the CMS RPC system during Run-2 / Hadjiiska, Roumyana Mileva (Sofiya, Inst. Nucl. Res.) /CMS Collaboration
The CMS (Compact Muon Solenoid) experiment, at the Large Hadron Collider (LHC) at CERN explores three different gaseous detector technologies in order to measure and trigger muons: CSC (Cathode Strip Chambers) in the forward regions, DT (Drift Tubes) in the central region, and RPC (Resistive Plate Chambers) both in the central and forward regions. The CMS RPC system provides information to all muon track finders and thus ensures the robustness and redundancy to the first level of muon triggering. [...]
CMS-CR-2019-252.- Geneva : CERN, 2019 - 8 p. Fulltext: PDF;
In : 27th International Symposium on Nuclear Electronics & Computing, Becici, Budva, Montenegro, 30 Sep - 4 Oct 2019
3.
First results of CMS RPC performance at 13 TeV / Pedraza-Morales, M.I. (Puebla U., Mexico) ; Shah, M.A. (NCP, Islamabad) ; Shopova, M. (Sofiya, Inst. Nucl. Res.) /on behalf of CMS Collaboration
The muon spectrometer of the CMS (Compact Muon Solenoid) experiment at the Large Hadron Collider (LHC) is equipped with a redundant system made of Resistive Plate Chambers (RPCs) and Drift Tube (DT) chambers in the barrel, RPC and Cathode Strip Chambers (CSCs) in the endcap region. In this paper, the first results of the performance of the RPC system during 2015 with the LHC running at 13 TeV is presented. [...]
arXiv:1605.09521.- 2016-12-01 - 7. - Published in : JINST 11 (2016) C12003 Fulltext: PDF; External link: Preprint
In : 13th Workshop on Resistive Plate Chambers and Related Detectors, Ghent, Belgium, 22 - 26 Feb 2016
4.
CMS muon detector and trigger performances / Keun Park , Sung (Korea U., KODEL) /CMS Collaboration
The CMS muon system has been in full operation since its commissioning with several million events of cosmic ray data. The muon system of the CMS experiment consists of three independent detectors: Resistive Plate Chambers (RPCs) both in the barrel and the endcap, Drift Tubes (DTs) in the barrel, and Cathode Strip Chambers (CSCs) in the endcap region. [...]
CMS-CR-2010-178.- Geneva : CERN, 2011 - 4 p. - Published in : Nucl. Phys. B, Proc. Suppl. 215 (2011) 356-358 Fulltext: PDF;
In : 12th Topical Seminar on Innovative Particle and Radiation Detectors, Sienna, Italy, 7-10 Jun 2010, pp.356-358
5.
Radiation Tests of Real-Sized Prototype RPCs for the Future CMS RPC Upscope / Lee, K.S. (Korea U.) ; Cho, S.W. (Korea U.) ; Choi, S.Y. (Korea U.) ; Hong, B. (Korea U.) ; Go, Y. (Korea U.) ; Kang, M.H. (Korea U.) ; Lim, J.H. (Korea U.) ; Park, S.K. (Korea U.) ; Cimmino, A. (Gent U.) ; Crucy, S. (Gent U.) et al.
We report on a systematic study of double-gap and four-gap phenolic resistive plate chambers (RPCs) for future high-{\eta} RPC triggers in the CMS. In the present study, we constructed real-sized double-gap and four-gap RPCs with gap thicknesses of 1.6 and 0.8 mm, respectively, with 2-mm-thick phenolic high-pressure-laminated (HPL) plates. [...]
arXiv:1605.00440.- 2016-08-10 - 10 p. - Published in : JINST 11 (2016) C08008 Fulltext: arXiv:1605.00440 - PDF; 10.1088_1748-0221_11_08_C08008 - PDF; IOP: PDF; External link: Preprint
In : 13th Workshop on Resistive Plate Chambers and Related Detectors, Ghent, Belgium, 22 - 26 Feb 2016, pp.C08008
6.
The performance of the CMS Muon system with data at $\sqrt s$ = 13 TeVThe performance of the CMS muon system during Run2 / Hadjiiska, Roumyana Mileva (Sofiya, Inst. Nucl. Res.) /CMS Collaboration
The muon spectrometer of the CMS experiment is based on three different gaseous detector technologies: Drift Tube (DT) chambers in the barrel, Cathode Strip Chambers (CSC) in the endcaps, and Resistive Plate Chambers (RPC) both in the barrel and endcaps. The performance of the muon system has been studied with LHC proton-proton collision data, collected with the CMS detector, at $\sqrt s$ = 13 TeV. [...]
CMS-CR-2018-167.- Geneva : CERN, 2019 - 12 p. - Published in : AIP Conf.Proc. 2075 (2019) 080013 Fulltext: PDF;
In : 10th International Physics Conference of the Balkan Physical Union, Sofia, Bulgaria, 26 - 30 Aug 2018, pp.080013
7.
Quality Certification 4 (QC4) for RE4 in the Upgrade in CMS / Carpinteyro Bernardino, S (Puebla U., Mexico) /CMS
The CMS muon system consist of Drif Tubes (DTs) in barrel region, Cathode Strip Chambers (CSCs) in the end-cap region and Resistive Plate Chambers (RPCs) in both regions. The RPCs with their excellent time resolution were chosen as dedicated muon trigger detector for the CMS experiment. [...]
2015 - 6 p. - Published in : J. Phys.: Conf. Ser. 651 (2015) 012005 Fulltext: PDF;
In : 14th Mexican Workshop on Particles and Fields, Oaxaca, Mexico, 25 - 29 Nov 2013, pp.012005
8.
Threshold-dependence study for narrow-pitch-strip CMS endcap RPCs / Lee, Kyong Sei (Korea U.) /CMS Collaboration
We report on a systematic study of double-gap and four-gap phenolic resistive plate chambers (RPCs) for high-η RPC triggers in CMS. Prototype double-gap and four-gap RPCs with gap thicknesses of 1.6 and 0.8 mm, respectively, have been constructed with 2-mm thick phenolic high-pressure-laminated (HPL) plates. [...]
CMS-CR-2016-053.- Geneva : CERN, 2016 - 11 p. Fulltext: PDF;
In : 13th Workshop on Resistive Plate Chambers and Related Detectors, Ghent, Belgium, 22 - 26 Feb 2016
9.
Resistive Plate Chambers commissioning and performance results for 2015 /CMS Collaboration
The Resistive Plate Chamber (RPC) detector system at the Compact Muon Solenoid experiment at the LHC confers robustness and redundancy to the muon trigger. During the first long shutdown of the LHC (2013-2014) the CMS muon RPC system has been upgraded with 144 double-gap chambers on the forth forward stations. [...]
CMS-DP-2016-014; CERN-CMS-DP-2016-014.- Geneva : CERN, 2016 - 24 p. Fulltext: PDF;
10.
CMS RPC muon detector performance with 2010-2012 LHC data / CMS Collaboration
The muon spectrometer of the CMS (Compact Muon Solenoid) experiment at the Large Hadron Collider (LHC) is equipped with a redundant system made of Resistive Plate Chambers and Drift Tube in barrel and RPC and Cathode Strip Chamber in endcap region. In this paper, the operations and performance of the RPC system during the first three years of LHC activity will be reported. [...]
arXiv:1406.7543.- Geneva : CERN, 2014-12-05 - 7 p. - Published in : JINST 9 (2014) C12016 Fulltext: CR2014_085 - PDF; arXiv:1406.7543 - PDF; Published version from IOP (Local copy): PDF; Published version from IOP, local copy: PDF; External link: Preprint
In : 12th workshop on Resistive Plate Chambers and Related Detectors, Beijing, China, 23 - 28 Feb 2014, pp.C12016

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