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Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system

In view of a possible extension of the forward CMS muon detector system and future LHC luminosity upgrades, Micro-Pattern Gas Detectors (MPGDs) are an appealing technology. They can simultaneously provide precision tracking and fast trigger information, as well as sufficiently fine segmentation to c...

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Detalles Bibliográficos
Autores principales: Abbaneo, D., Bally, S., Postema, H., Conde Garcia, A., Chatelain, J.P., Faber, G., Ropelewski, L., Duarte Pinto, S., Croci, G., Alfonsi, M., Van Stenis, M., Sharma, A., Benussi, L., Bianco, S., Colafranceschi, S., Fabbri, F., Passamonti, L., Piccolo, D., Pierluigi, D., Raffone, G., Russo, A., Saviano, G., Marinov, A., Tytgat, M., Zaganidis, N., Hohlmann, M., Gnanvo, K., Bagliesi, M.G., Cecchi, R., Turini, N., Oliveri, E., Magazzu, G., Ban, Y., Teng, H., Cai, J.
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1109/NSSMIC.2010.5874107
http://cds.cern.ch/record/1312878
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author Abbaneo, D.
Bally, S.
Postema, H.
Conde Garcia, A.
Chatelain, J.P.
Faber, G.
Ropelewski, L.
Duarte Pinto, S.
Croci, G.
Alfonsi, M.
Van Stenis, M.
Sharma, A.
Benussi, L.
Bianco, S.
Colafranceschi, S.
Fabbri, F.
Passamonti, L.
Piccolo, D.
Pierluigi, D.
Raffone, G.
Russo, A.
Saviano, G.
Marinov, A.
Tytgat, M.
Zaganidis, N.
Hohlmann, M.
Gnanvo, K.
Bagliesi, M.G.
Cecchi, R.
Turini, N.
Oliveri, E.
Magazzu, G.
Ban, Y.
Teng, H.
Cai, J.
author_facet Abbaneo, D.
Bally, S.
Postema, H.
Conde Garcia, A.
Chatelain, J.P.
Faber, G.
Ropelewski, L.
Duarte Pinto, S.
Croci, G.
Alfonsi, M.
Van Stenis, M.
Sharma, A.
Benussi, L.
Bianco, S.
Colafranceschi, S.
Fabbri, F.
Passamonti, L.
Piccolo, D.
Pierluigi, D.
Raffone, G.
Russo, A.
Saviano, G.
Marinov, A.
Tytgat, M.
Zaganidis, N.
Hohlmann, M.
Gnanvo, K.
Bagliesi, M.G.
Cecchi, R.
Turini, N.
Oliveri, E.
Magazzu, G.
Ban, Y.
Teng, H.
Cai, J.
author_sort Abbaneo, D.
collection CERN
description In view of a possible extension of the forward CMS muon detector system and future LHC luminosity upgrades, Micro-Pattern Gas Detectors (MPGDs) are an appealing technology. They can simultaneously provide precision tracking and fast trigger information, as well as sufficiently fine segmentation to cope with high particle rates in the high-eta region at LHC and its future upgrades. We report on the design and construction of a full-size prototype for the CMS endcap system, the largest Triple-GEM detector built to-date. We present details on the 3D modeling of the detector geometry, the implementation of the readout strips and electronics, and the detector assembly procedure.
id cern-1312878
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13128782021-11-27T03:34:24Zdoi:10.1109/NSSMIC.2010.5874107http://cds.cern.ch/record/1312878engAbbaneo, D.Bally, S.Postema, H.Conde Garcia, A.Chatelain, J.P.Faber, G.Ropelewski, L.Duarte Pinto, S.Croci, G.Alfonsi, M.Van Stenis, M.Sharma, A.Benussi, L.Bianco, S.Colafranceschi, S.Fabbri, F.Passamonti, L.Piccolo, D.Pierluigi, D.Raffone, G.Russo, A.Saviano, G.Marinov, A.Tytgat, M.Zaganidis, N.Hohlmann, M.Gnanvo, K.Bagliesi, M.G.Cecchi, R.Turini, N.Oliveri, E.Magazzu, G.Ban, Y.Teng, H.Cai, J.Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon systemDetectors and Experimental TechniquesIn view of a possible extension of the forward CMS muon detector system and future LHC luminosity upgrades, Micro-Pattern Gas Detectors (MPGDs) are an appealing technology. They can simultaneously provide precision tracking and fast trigger information, as well as sufficiently fine segmentation to cope with high particle rates in the high-eta region at LHC and its future upgrades. We report on the design and construction of a full-size prototype for the CMS endcap system, the largest Triple-GEM detector built to-date. We present details on the 3D modeling of the detector geometry, the implementation of the readout strips and electronics, and the detector assembly procedure.In view of a possible extension of the forward CMS muon detector system and future LHC luminosity upgrades, Micro-Pattern Gas Detectors (MPGDs) are an appealing technology. They can simultaneously provide precision tracking and fast trigger information, as well as sufficiently fine segmentation to cope with high particle rates in the high-eta region at LHC and its future upgrades. We report on the design and construction of a full-size prototype for the CMS endcap system, the largest Triple-GEM detector built to-date. We present details on the 3D modeling of the detector geometry, the implementation of the readout strips and electronics, and the detector assembly procedure.arXiv:1012.1524FRASCATI-PREPRINT-LNF-10-24(P)RD51-NOTE-2010-008FRASCATI-LNF-10-24-PRD51-NOTE-2010-008oai:cds.cern.ch:13128782010-12-08
spellingShingle Detectors and Experimental Techniques
Abbaneo, D.
Bally, S.
Postema, H.
Conde Garcia, A.
Chatelain, J.P.
Faber, G.
Ropelewski, L.
Duarte Pinto, S.
Croci, G.
Alfonsi, M.
Van Stenis, M.
Sharma, A.
Benussi, L.
Bianco, S.
Colafranceschi, S.
Fabbri, F.
Passamonti, L.
Piccolo, D.
Pierluigi, D.
Raffone, G.
Russo, A.
Saviano, G.
Marinov, A.
Tytgat, M.
Zaganidis, N.
Hohlmann, M.
Gnanvo, K.
Bagliesi, M.G.
Cecchi, R.
Turini, N.
Oliveri, E.
Magazzu, G.
Ban, Y.
Teng, H.
Cai, J.
Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title_full Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title_fullStr Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title_full_unstemmed Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title_short Construction of the first full-size GEM-based prototype for the CMS high-$\eta$ muon system
title_sort construction of the first full-size gem-based prototype for the cms high-$\eta$ muon system
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/NSSMIC.2010.5874107
http://cds.cern.ch/record/1312878
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