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Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector

A new CMS Tracker is under development for operation at the High Luminosity LHC from 2026 onwards. It includes an outer tracker based on dedicated modules that will reconstruct short track segments, called stubs, using spatially coincident clusters in two closely spaced silicon sensor layers. These...

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Detalles Bibliográficos
Autores principales: Abbaneo, Duccio, Auzinger, Georg, Bergauer, Thomas, Georges Blanchot, Bonnin, Christian, Braga, Davide, Charles, Laurent, Roy Chowdhury, Suvankar, Cussans, David, Delaere, Christophe, Delcourt, Martin, Dierlamm, Alexander Hermann, Dragicevic, Marko Gerhart, Dutta, Suchandra, Fulcher, Jonathan Richard, Goldstein, Joel, Gross, Laurent, Hall, Geoffrey, Harb, Ali, Hartmann, Frank, Hauk, Johannes, Honma, Alan, Cabrera Jamoulle, Juan Bautista, De Favereau De Jeneret, Jerome, Jones, Lawrence, Kovacs, Mark Istvan, Mersi, Stefano, Murray, Peter, Mussgiller, Andreas, Pesaresi, Mark Franco, Printz, Martin, Prydderch, Mark Lyndon, Raymond, David Mark, Skovpen, Kirill, Treberer-Treberspurg, Wolfgang, Vasey, Francois
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/13/03/P03003
http://cds.cern.ch/record/2290103
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author Abbaneo, Duccio
Auzinger, Georg
Bergauer, Thomas
Georges Blanchot
Bonnin, Christian
Braga, Davide
Charles, Laurent
Roy Chowdhury, Suvankar
Cussans, David
Delaere, Christophe
Delcourt, Martin
Dierlamm, Alexander Hermann
Dragicevic, Marko Gerhart
Dutta, Suchandra
Fulcher, Jonathan Richard
Goldstein, Joel
Gross, Laurent
Hall, Geoffrey
Harb, Ali
Hartmann, Frank
Hauk, Johannes
Honma, Alan
Cabrera Jamoulle, Juan Bautista
De Favereau De Jeneret, Jerome
Jones, Lawrence
Kovacs, Mark Istvan
Mersi, Stefano
Murray, Peter
Mussgiller, Andreas
Pesaresi, Mark Franco
Printz, Martin
Prydderch, Mark Lyndon
Raymond, David Mark
Skovpen, Kirill
Treberer-Treberspurg, Wolfgang
Vasey, Francois
author_facet Abbaneo, Duccio
Auzinger, Georg
Bergauer, Thomas
Georges Blanchot
Bonnin, Christian
Braga, Davide
Charles, Laurent
Roy Chowdhury, Suvankar
Cussans, David
Delaere, Christophe
Delcourt, Martin
Dierlamm, Alexander Hermann
Dragicevic, Marko Gerhart
Dutta, Suchandra
Fulcher, Jonathan Richard
Goldstein, Joel
Gross, Laurent
Hall, Geoffrey
Harb, Ali
Hartmann, Frank
Hauk, Johannes
Honma, Alan
Cabrera Jamoulle, Juan Bautista
De Favereau De Jeneret, Jerome
Jones, Lawrence
Kovacs, Mark Istvan
Mersi, Stefano
Murray, Peter
Mussgiller, Andreas
Pesaresi, Mark Franco
Printz, Martin
Prydderch, Mark Lyndon
Raymond, David Mark
Skovpen, Kirill
Treberer-Treberspurg, Wolfgang
Vasey, Francois
author_sort Abbaneo, Duccio
collection CERN
description A new CMS Tracker is under development for operation at the High Luminosity LHC from 2026 onwards. It includes an outer tracker based on dedicated modules that will reconstruct short track segments, called stubs, using spatially coincident clusters in two closely spaced silicon sensor layers. These modules allow the rejection of low transverse momentum track hits and reduce the data volume before transmission to the first level trigger. The inclusion of tracking information in the trigger decision is essential to limit the first level trigger accept rate. A customized front-end readout chip, the CMS Binary Chip (CBC), containing a stub finding logic has been designed for this purpose. A prototype module, equipped with the CBC chip, has been constructed and operated for the first time in a $4\,\text{Ge\hspace{-.08em}V\hspace{-0.16em}/\hspace{-0.08em}}c$ positron beam at DESY. The behaviour of the stub finding was studied for different angles of beam incidence on a module, which allows an estimate of the sensitivity to transverse momentum within the future CMS detector. A sharp transverse momentum threshold around $2\,\text{Ge\hspace{-.08em}V\hspace{-0.16em}/\hspace{-0.08em}}c$ was demonstrated, which meets the requirement to reject a large fraction of low momentum tracks present in the LHC environment on-detector. This is the first realistic demonstration of a silicon tracking module that is able to select data, based on the particle's transverse momentum, for use in a first level trigger at the LHC. The results from this test are described here.
id cern-2290103
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22901032019-10-15T15:17:14Zdoi:10.1088/1748-0221/13/03/P03003http://cds.cern.ch/record/2290103engAbbaneo, DuccioAuzinger, GeorgBergauer, ThomasGeorges BlanchotBonnin, ChristianBraga, DavideCharles, LaurentRoy Chowdhury, SuvankarCussans, DavidDelaere, ChristopheDelcourt, MartinDierlamm, Alexander HermannDragicevic, Marko GerhartDutta, SuchandraFulcher, Jonathan RichardGoldstein, JoelGross, LaurentHall, GeoffreyHarb, AliHartmann, FrankHauk, JohannesHonma, AlanCabrera Jamoulle, Juan BautistaDe Favereau De Jeneret, JeromeJones, LawrenceKovacs, Mark IstvanMersi, StefanoMurray, PeterMussgiller, AndreasPesaresi, Mark FrancoPrintz, MartinPrydderch, Mark LyndonRaymond, David MarkSkovpen, KirillTreberer-Treberspurg, WolfgangVasey, FrancoisTest beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detectorDetectors and Experimental TechniquesA new CMS Tracker is under development for operation at the High Luminosity LHC from 2026 onwards. It includes an outer tracker based on dedicated modules that will reconstruct short track segments, called stubs, using spatially coincident clusters in two closely spaced silicon sensor layers. These modules allow the rejection of low transverse momentum track hits and reduce the data volume before transmission to the first level trigger. The inclusion of tracking information in the trigger decision is essential to limit the first level trigger accept rate. A customized front-end readout chip, the CMS Binary Chip (CBC), containing a stub finding logic has been designed for this purpose. A prototype module, equipped with the CBC chip, has been constructed and operated for the first time in a $4\,\text{Ge\hspace{-.08em}V\hspace{-0.16em}/\hspace{-0.08em}}c$ positron beam at DESY. The behaviour of the stub finding was studied for different angles of beam incidence on a module, which allows an estimate of the sensitivity to transverse momentum within the future CMS detector. A sharp transverse momentum threshold around $2\,\text{Ge\hspace{-.08em}V\hspace{-0.16em}/\hspace{-0.08em}}c$ was demonstrated, which meets the requirement to reject a large fraction of low momentum tracks present in the LHC environment on-detector. This is the first realistic demonstration of a silicon tracking module that is able to select data, based on the particle's transverse momentum, for use in a first level trigger at the LHC. The results from this test are described here.CMS-NOTE-2017-010CERN-CMS-NOTE-2017-010oai:cds.cern.ch:22901032016-06-29
spellingShingle Detectors and Experimental Techniques
Abbaneo, Duccio
Auzinger, Georg
Bergauer, Thomas
Georges Blanchot
Bonnin, Christian
Braga, Davide
Charles, Laurent
Roy Chowdhury, Suvankar
Cussans, David
Delaere, Christophe
Delcourt, Martin
Dierlamm, Alexander Hermann
Dragicevic, Marko Gerhart
Dutta, Suchandra
Fulcher, Jonathan Richard
Goldstein, Joel
Gross, Laurent
Hall, Geoffrey
Harb, Ali
Hartmann, Frank
Hauk, Johannes
Honma, Alan
Cabrera Jamoulle, Juan Bautista
De Favereau De Jeneret, Jerome
Jones, Lawrence
Kovacs, Mark Istvan
Mersi, Stefano
Murray, Peter
Mussgiller, Andreas
Pesaresi, Mark Franco
Printz, Martin
Prydderch, Mark Lyndon
Raymond, David Mark
Skovpen, Kirill
Treberer-Treberspurg, Wolfgang
Vasey, Francois
Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title_full Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title_fullStr Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title_full_unstemmed Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title_short Test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future CMS tracking detector
title_sort test beam demonstration of silicon microstrip modules with transverse momentum discrimination for the future cms tracking detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/13/03/P03003
http://cds.cern.ch/record/2290103
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