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1.
Strategies and performance of the CMS silicon tracker alignment during LHC Run 2 / CMS Collaboration
The strategies for and the performance of the CMS silicon tracking system alignment during the 2015-2018 data-taking period of the LHC are described. The alignment procedures during and after data taking are explained. [...]
arXiv:2111.08757; CMS-TRK-20-001; CERN-EP-2021-203; CMS-TRK-20-001-003.- Geneva : CERN, 2022-08-11 - 45 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1037 (2022) 166795 Fulltext: 2111.08757 - PDF; Publication - PDF; fermilab-pub-21-673-cms - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
2.
Precision measurement of the structure of the CMS inner tracking system using nuclear interactions / CMS Collaboration
The structure of the CMS inner tracking system has been studied using nuclear interactions of hadrons striking its material. Data from proton-proton collisions at a center-of-mass energy of 13 TeV recorded in 2015 at the LHC are used to reconstruct millions of secondary vertices from these nuclear interactions. [...]
arXiv:1807.03289; CMS-TRK-17-001; CERN-EP-2018-144; CMS-TRK-17-001-003.- Geneva : CERN, 2018-10-29 - 41 p. - Published in : JINST 13 (2018) P10034 Fulltext: 1807.03289 - PDF; fulltext1682069 - PDF; Fulltext from Publisher: PDF; External link: Figures, tables and other information
3.
Description and performance of track and primary-vertex reconstruction with the CMS tracker / CMS Collaboration
A description is provided of the software algorithms developed for the CMS tracker both for reconstructing charged-particle trajectories in proton-proton interactions and for using the resulting tracks to estimate the positions of the LHC luminous region and individual primary-interaction vertices. Despite the very hostile environment at the LHC, the performance obtained with these algorithms is found to be excellent. [...]
arXiv:1405.6569; CMS-TRK-11-001; CERN-PH-EP-2014-070; CERN-PH-EP-2014-070; CMS-TRK-11-001.- Geneva : CERN, 2014-10-16 - 80 p. - Published in : JINST 9 (2014) P10009 Fulltext: cms-trk-11-001-arxiv - PDF; openaccess_2014_J._Inst._9_P10009 - PDF; arXiv:1405.6569 - PDF; IOP Open Access article: PDF; External links: Fulltext; Open Access fulltext
4.
Alignment of the CMS tracker with LHC and cosmic ray data / CMS Collaboration
The central component of the CMS detector is the largest silicon tracker ever built. The precise alignment of this complex device is a formidable challenge, and only achievable with a significant extension of the technologies routinely used for tracking detectors in the past. [...]
arXiv:1403.2286; CMS-TRK-11-002; CERN-PH-EP-2014-028; CMS-TRK-11-002; CERN-PH-EP-2014-028.- Geneva : CERN, 2014-06-06 - 56 p. - Published in : JINST 9 (2014) P06009 Fulltext: cms-trk-11-002-arxiv - PDF; fermilab-pub-14-075-cms - PDF; arXiv:1403.2286 - PDF; IOP Open Access article: PDF;
5.
Track Reconstruction with Cosmic Ray Data at the Tracker Integration Facility / CMS Collaboration
The subsystems of the CMS silicon strip tracker were integrated and commissioned at the Tracker Integration Facility (TIF) in the period from November 2006 to July 2007. As part of the commissioning, large samples of cosmic ray data were recorded under various running conditions in the absence of a magnetic field. [...]
CMS-NOTE-2009-003.- Geneva : CERN, 2008 - 36 p. Fulltext: PDF;
6.
Czochralski Silicon as a Detector Material for S-LHC Tracker Volumes / Spiegel, Leonard (Fermilab) ; Barvich, Tobias (KIT, Karlsruhe, EKP) ; Betchart, Burt (Rochester U.) ; Bhattacharya, Saptaparna (Brown U.) ; Czellar, Sandor (Helsinki Inst. of Phys.) ; Demina, Regina (Rochester U.) ; Dierlamm, Alexander (KIT, Karlsruhe, EKP) ; Frey, Martin (KIT, Karlsruhe, EKP) ; Gotra, Yuri (Rochester U.) ; Harkonen, Jaakko (Helsinki Inst. of Phys.) et al.
With an expected ten-fold increase in luminosity in S-LHC, the radiation environment in the tracker volumes will be considerably harsher for silicon-based detectors than the already harsh LHC environment. Since 2006, a group of CMS institutes, using a modified CMS DAQ system, has been exploring the use of Magnetic Czochralski silicon as a detector element for the strip tracker layers in S-LHC experiments. [...]
arXiv:1008.4107; FERMILAB-PUB-10-298-E; FERMILAB-PUB-10-298-E.- 2011 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 628 (2011) 242-245 Fulltext: arXiv:1008.4107 - PDF; fermilab-pub-10-298-e - PDF; External link: Fermilab Library Server (fulltext available)
In : 12th Vienna Conference on Instrumentation, Vienna, Austria, 15 - 20 Feb 2010, pp.242-245
7.
Integration of the End Cap TEC+ of the CMS Silicon Strip Tracker / Tracker End Cap Collaboration
The silicon strip tracker of the CMS experiment has been completed and inserted into the CMS detector in late 2007. The largest sub-system of the tracker is its end cap system, comprising two large end caps (TEC) each containing 3200 silicon strip modules. [...]
CMS-NOTE-2009-009.- Geneva : CERN, 2009 - 57 p. Fulltext: PDF;
8.
Reception Test of Petals for the End Cap TEC+ of the CMS Silicon Strip Tracker / Tracker End Cap Collaboration
The silicon strip tracker of the CMS experiment has been completed and was inserted into the CMS detector in late 2007. The largest sub system of the tracker are its end caps, comprising two large end caps (TEC) each containing 3200 silicon strip modules [...]
CMS-NOTE-2009-005.- Geneva : CERN, 2009 - 22 p. Fulltext: PDF;
9.
Petal Integration for the CMS Tracker End Caps / Bergauer, Thomas ; Dragicevic, Marko ; Friedl, Markus ; Hansel, S ; Hrubec, Josef ; Krammer, Manfred ; Pernicka, Manfred ; Beaumont, Willem ; De Wolf, Eddi A ; Bouhali, Othmane et al.
This note describes the assembly and testing of the 292 petals built for the CMS Tracker End Caps from the beginning of 2005 until the summer of 2006. Due to the large number of petals to be assembled and the need to reach a throughput of 10 to 15 petals per week, a distributed integration approach was chosen. [...]
CMS-NOTE-2008-028.- Geneva : CERN, 2008 - 30 p. Fulltext: PDF;

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