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Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary

Following successive upgrades of the CERN Large Hadron Collider (LHC) until approximately 2025, the High Luminosity LHC (HL-LHC) is expected to deliver pp collisions of centre-of-mass energy s=14TeV with a levelled peak luminosity in excess of 5×1034cm−2s−1 and an integrated luminosity of order 300f...

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Autores principales: Clark, A, Barbier, G, Cadoux, F, Endo, M, Favre, Y, Ferrere, D, Gonzalez-Sevilla, S, Hanagaki, K, Hara, K, Iacobucci, G, Ikegami, Y, Jinnouchi, O, La Marra, D, Nakamura, K, Nishimura, R, Perrin, E, Seez, W, Takubo, Y, Takashima, R, Terada, S, Todome, K, Unno, Y, Weber, M
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2014.05.010
http://cds.cern.ch/record/2025836
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author Clark, A
Barbier, G
Cadoux, F
Endo, M
Favre, Y
Ferrere, D
Gonzalez-Sevilla, S
Hanagaki, K
Hara, K
Iacobucci, G
Ikegami, Y
Jinnouchi, O
La Marra, D
Nakamura, K
Nishimura, R
Perrin, E
Seez, W
Takubo, Y
Takashima, R
Terada, S
Todome, K
Unno, Y
Weber, M
author_facet Clark, A
Barbier, G
Cadoux, F
Endo, M
Favre, Y
Ferrere, D
Gonzalez-Sevilla, S
Hanagaki, K
Hara, K
Iacobucci, G
Ikegami, Y
Jinnouchi, O
La Marra, D
Nakamura, K
Nishimura, R
Perrin, E
Seez, W
Takubo, Y
Takashima, R
Terada, S
Todome, K
Unno, Y
Weber, M
author_sort Clark, A
collection CERN
description Following successive upgrades of the CERN Large Hadron Collider (LHC) until approximately 2025, the High Luminosity LHC (HL-LHC) is expected to deliver pp collisions of centre-of-mass energy s=14TeV with a levelled peak luminosity in excess of 5×1034cm−2s−1 and an integrated luminosity of order 300fb−1 per year. The ATLAS Collaboration intends to replace the existing Inner Tracking Detector by a new tracker, with readout electronics as well as silicon pixel and strip sensor technology capable of maintaining the excellent mechanical and electrical performance of the existing tracker in the severe radiation and high collision rate environment of the HL-LHC. The super-module integration concept extends the proven design of the existing barrel silicon strip tracker to the HL-LHC, with double-sided stereo silicon micro-strip modules assembled into a low mass local support structure. The first phase of the Super-Module R&D; programme has been successfully completed, demonstrating the feasibility of the Super-Module concept. A summary is made up of the key prototype mechanical and electrical results of the R&D;, as well as a short perspective of future developments.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling oai-inspirehep.net-13263372019-09-30T06:29:59Zdoi:10.1016/j.nima.2014.05.010http://cds.cern.ch/record/2025836engClark, ABarbier, GCadoux, FEndo, MFavre, YFerrere, DGonzalez-Sevilla, SHanagaki, KHara, KIacobucci, GIkegami, YJinnouchi, OLa Marra, DNakamura, KNishimura, RPerrin, ESeez, WTakubo, YTakashima, RTerada, STodome, KUnno, YWeber, MDouble-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summaryDetectors and Experimental TechniquesFollowing successive upgrades of the CERN Large Hadron Collider (LHC) until approximately 2025, the High Luminosity LHC (HL-LHC) is expected to deliver pp collisions of centre-of-mass energy s=14TeV with a levelled peak luminosity in excess of 5×1034cm−2s−1 and an integrated luminosity of order 300fb−1 per year. The ATLAS Collaboration intends to replace the existing Inner Tracking Detector by a new tracker, with readout electronics as well as silicon pixel and strip sensor technology capable of maintaining the excellent mechanical and electrical performance of the existing tracker in the severe radiation and high collision rate environment of the HL-LHC. The super-module integration concept extends the proven design of the existing barrel silicon strip tracker to the HL-LHC, with double-sided stereo silicon micro-strip modules assembled into a low mass local support structure. The first phase of the Super-Module R&D; programme has been successfully completed, demonstrating the feasibility of the Super-Module concept. A summary is made up of the key prototype mechanical and electrical results of the R&D;, as well as a short perspective of future developments.oai:inspirehep.net:13263372014
spellingShingle Detectors and Experimental Techniques
Clark, A
Barbier, G
Cadoux, F
Endo, M
Favre, Y
Ferrere, D
Gonzalez-Sevilla, S
Hanagaki, K
Hara, K
Iacobucci, G
Ikegami, Y
Jinnouchi, O
La Marra, D
Nakamura, K
Nishimura, R
Perrin, E
Seez, W
Takubo, Y
Takashima, R
Terada, S
Todome, K
Unno, Y
Weber, M
Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title_full Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title_fullStr Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title_full_unstemmed Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title_short Double-sided super-module R&D; for the ATLAS tracker at HL-LHC – A summary
title_sort double-sided super-module r&d; for the atlas tracker at hl-lhc – a summary
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2014.05.010
http://cds.cern.ch/record/2025836
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