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Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS

The inner tracker of the ATLAS detector is scheduled to be replaced by a completely new silicon-based inner tracker (ITk) for the Phase-II of the CERN LHC (HL-LHC). The silicon strip detector covers the volume 40<R<100 cm in the radial and |z|< 300 cm in the longitudinal directions. The sil...

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Autores principales: Hara, K, Abidi, S H, Affolder, A A, Allport, P, Basso, M J, Casha, A, Cindro, V, Ciungu, B M, Dette, K, Escobar, C, Fadeyev, V, Freeman, P, Garcia, C, Gonella, L, Gunnell, J, Harada, D, Helling, C, Hunter, A, Kisliuk, D, Kopsalis, I, Kroll, J, Lacasta, C, Latonova, V, Mandić, I, Martinez-Mckinney, F, Mikestikova, M, Miñano, M, Nakamura, K, Nicolini, J, Onaru, K, Orr, R S, Pyatt, S, Saito, K, Sato, K, Simpson-Allsop, C, Soldevila, U, Teuscher, R, Thomas, J, Unno, Y, Wada, S, Worm, S, Zatocilova, I
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2020.164422
http://cds.cern.ch/record/2744098
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author Hara, K
Abidi, S H
Affolder, A A
Allport, P
Basso, M J
Casha, A
Cindro, V
Ciungu, B M
Dette, K
Escobar, C
Fadeyev, V
Freeman, P
Garcia, C
Gonella, L
Gunnell, J
Harada, D
Helling, C
Hunter, A
Kisliuk, D
Kopsalis, I
Kroll, J
Lacasta, C
Latonova, V
Mandić, I
Martinez-Mckinney, F
Mikestikova, M
Miñano, M
Nakamura, K
Nicolini, J
Onaru, K
Orr, R S
Pyatt, S
Saito, K
Sato, K
Simpson-Allsop, C
Soldevila, U
Teuscher, R
Thomas, J
Unno, Y
Wada, S
Worm, S
Zatocilova, I
author_facet Hara, K
Abidi, S H
Affolder, A A
Allport, P
Basso, M J
Casha, A
Cindro, V
Ciungu, B M
Dette, K
Escobar, C
Fadeyev, V
Freeman, P
Garcia, C
Gonella, L
Gunnell, J
Harada, D
Helling, C
Hunter, A
Kisliuk, D
Kopsalis, I
Kroll, J
Lacasta, C
Latonova, V
Mandić, I
Martinez-Mckinney, F
Mikestikova, M
Miñano, M
Nakamura, K
Nicolini, J
Onaru, K
Orr, R S
Pyatt, S
Saito, K
Sato, K
Simpson-Allsop, C
Soldevila, U
Teuscher, R
Thomas, J
Unno, Y
Wada, S
Worm, S
Zatocilova, I
author_sort Hara, K
collection CERN
description The inner tracker of the ATLAS detector is scheduled to be replaced by a completely new silicon-based inner tracker (ITk) for the Phase-II of the CERN LHC (HL-LHC). The silicon strip detector covers the volume 40<R<100 cm in the radial and |z|< 300 cm in the longitudinal directions. The silicon sensors for the detector will be fabricated using the n$^+$-on-p 6-inch wafer technology, for a total of 22,000 wafers. Intensive studies were carried out on the final prototype sensors ATLAS17LS fabricated by Hamamatsu Photonics (HPK). The charge collection properties were examined using penetrating   $^{90}$Sr $β$-rays and the ALIBAVA fast readout system for the miniature sensors of 1 cm × 1 cm in area. The samples were irradiated by protons in the 27 MeV Birmingham Cyclotron, the 70 MeV CYRIC at Tohoku University, and the 24 GeV CERN-PS, and by neutrons at Ljubljana TRIGA reactor for fluence values up to $2 × 10^{15} \mathrm{n_{eq}/cm}^2$. The change in the charge collection with fluence was found to be similar to the previous prototype ATLAS12, and acceptable for the ITk. Sensors with two active thicknesses, 300μm (standard) and 240μm (thin), were compared and the difference in the charge collection was observed to be small for bias voltages up to 500 V. Some samples were also irradiated with gamma radiation up to 2 MGy, and the full depletion voltage was found to decrease with the dose. This was caused by the Compton electrons due to the   60 Co gamma radiation. To summarize, the design of the ATLAS17LS and technology for its fabrication have been verified for implementation in the ITk. We are in the stage of sensor pre-production with the first sensors already delivered in January of 2020.
id oai-inspirehep.net-1815609
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18156092022-12-13T14:29:38Zdoi:10.1016/j.nima.2020.164422http://cds.cern.ch/record/2744098engHara, KAbidi, S HAffolder, A AAllport, PBasso, M JCasha, ACindro, VCiungu, B MDette, KEscobar, CFadeyev, VFreeman, PGarcia, CGonella, LGunnell, JHarada, DHelling, CHunter, AKisliuk, DKopsalis, IKroll, JLacasta, CLatonova, VMandić, IMartinez-Mckinney, FMikestikova, MMiñano, MNakamura, KNicolini, JOnaru, KOrr, R SPyatt, SSaito, KSato, KSimpson-Allsop, CSoldevila, UTeuscher, RThomas, JUnno, YWada, SWorm, SZatocilova, ICharge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LSDetectors and Experimental TechniquesThe inner tracker of the ATLAS detector is scheduled to be replaced by a completely new silicon-based inner tracker (ITk) for the Phase-II of the CERN LHC (HL-LHC). The silicon strip detector covers the volume 40<R<100 cm in the radial and |z|< 300 cm in the longitudinal directions. The silicon sensors for the detector will be fabricated using the n$^+$-on-p 6-inch wafer technology, for a total of 22,000 wafers. Intensive studies were carried out on the final prototype sensors ATLAS17LS fabricated by Hamamatsu Photonics (HPK). The charge collection properties were examined using penetrating   $^{90}$Sr $β$-rays and the ALIBAVA fast readout system for the miniature sensors of 1 cm × 1 cm in area. The samples were irradiated by protons in the 27 MeV Birmingham Cyclotron, the 70 MeV CYRIC at Tohoku University, and the 24 GeV CERN-PS, and by neutrons at Ljubljana TRIGA reactor for fluence values up to $2 × 10^{15} \mathrm{n_{eq}/cm}^2$. The change in the charge collection with fluence was found to be similar to the previous prototype ATLAS12, and acceptable for the ITk. Sensors with two active thicknesses, 300μm (standard) and 240μm (thin), were compared and the difference in the charge collection was observed to be small for bias voltages up to 500 V. Some samples were also irradiated with gamma radiation up to 2 MGy, and the full depletion voltage was found to decrease with the dose. This was caused by the Compton electrons due to the   60 Co gamma radiation. To summarize, the design of the ATLAS17LS and technology for its fabrication have been verified for implementation in the ITk. We are in the stage of sensor pre-production with the first sensors already delivered in January of 2020.oai:inspirehep.net:18156092020
spellingShingle Detectors and Experimental Techniques
Hara, K
Abidi, S H
Affolder, A A
Allport, P
Basso, M J
Casha, A
Cindro, V
Ciungu, B M
Dette, K
Escobar, C
Fadeyev, V
Freeman, P
Garcia, C
Gonella, L
Gunnell, J
Harada, D
Helling, C
Hunter, A
Kisliuk, D
Kopsalis, I
Kroll, J
Lacasta, C
Latonova, V
Mandić, I
Martinez-Mckinney, F
Mikestikova, M
Miñano, M
Nakamura, K
Nicolini, J
Onaru, K
Orr, R S
Pyatt, S
Saito, K
Sato, K
Simpson-Allsop, C
Soldevila, U
Teuscher, R
Thomas, J
Unno, Y
Wada, S
Worm, S
Zatocilova, I
Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title_full Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title_fullStr Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title_full_unstemmed Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title_short Charge collection study with the ATLAS ITk prototype silicon strip sensors ATLAS17LS
title_sort charge collection study with the atlas itk prototype silicon strip sensors atlas17ls
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2020.164422
http://cds.cern.ch/record/2744098
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