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Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments

Plastic scintillator detectors have been extensively used in particle physics experiments for decades. A large-scale detector is typically arranged as an array of staggered long bars which provide a fast trigger signal and/or particle identification via time-of-flight measurements. Scintillation lig...

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Autores principales: Korzenev, A., Betancourt, C., Blondel, A., Breton, D., Datwyler, A., Gascon, D., Gomez, S., Khabibullin, M., Kudenko, Y., Maalmi, J., Mermod, P., Noah, E., Serra, N., Sgalaberna, D., Storaci, B.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.7566/JPSCP.27.011005
http://cds.cern.ch/record/2658029
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author Korzenev, A.
Betancourt, C.
Blondel, A.
Breton, D.
Datwyler, A.
Gascon, D.
Gomez, S.
Khabibullin, M.
Kudenko, Y.
Maalmi, J.
Mermod, P.
Noah, E.
Serra, N.
Sgalaberna, D.
Storaci, B.
author_facet Korzenev, A.
Betancourt, C.
Blondel, A.
Breton, D.
Datwyler, A.
Gascon, D.
Gomez, S.
Khabibullin, M.
Kudenko, Y.
Maalmi, J.
Mermod, P.
Noah, E.
Serra, N.
Sgalaberna, D.
Storaci, B.
author_sort Korzenev, A.
collection CERN
description Plastic scintillator detectors have been extensively used in particle physics experiments for decades. A large-scale detector is typically arranged as an array of staggered long bars which provide a fast trigger signal and/or particle identification via time-of-flight measurements. Scintillation light is collected by photosensors coupled to both ends of every bar. In this article, we present our study on a direct replacement of commonly used vacuum photomultiplier tubes (PMTs) by arrays of large-area silicon photomultipliers (SiPMs). An SiPM array which is directly coupled to the scintillator bulk, has a clear advantage with respect to a PMT: compactness, mechanical robustness, high PDE, low operation voltage, insensitivity to magnetic field, low material budget, possibility to omit light-guides. In this study, arrays of eight 6 × 6 mm^2 area SiPMs were coupled to the ends of plastic scintillator bars with 1.68 and 2.3 m lengths. An 8 channel SiPM anode readout ASIC (eMUSIC) was used for the readout, amplification and summation of signals of individual SiPMs. Timing characteristics of a large-scale detector prototype were studied in test-beams at the CERN PS. This technology is proposed for the ToF system of the ND280/T2K II upgrade at J-PARC and the timing detector of the SHiP experiment at the CERN SPS.
id cern-2658029
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26580292022-01-06T03:07:44Zdoi:10.7566/JPSCP.27.011005http://cds.cern.ch/record/2658029engKorzenev, A.Betancourt, C.Blondel, A.Breton, D.Datwyler, A.Gascon, D.Gomez, S.Khabibullin, M.Kudenko, Y.Maalmi, J.Mermod, P.Noah, E.Serra, N.Sgalaberna, D.Storaci, B.Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experimentsphysics.ins-detDetectors and Experimental TechniquesPlastic scintillator detectors have been extensively used in particle physics experiments for decades. A large-scale detector is typically arranged as an array of staggered long bars which provide a fast trigger signal and/or particle identification via time-of-flight measurements. Scintillation light is collected by photosensors coupled to both ends of every bar. In this article, we present our study on a direct replacement of commonly used vacuum photomultiplier tubes (PMTs) by arrays of large-area silicon photomultipliers (SiPMs). An SiPM array which is directly coupled to the scintillator bulk, has a clear advantage with respect to a PMT: compactness, mechanical robustness, high PDE, low operation voltage, insensitivity to magnetic field, low material budget, possibility to omit light-guides. In this study, arrays of eight 6 × 6 mm^2 area SiPMs were coupled to the ends of plastic scintillator bars with 1.68 and 2.3 m lengths. An 8 channel SiPM anode readout ASIC (eMUSIC) was used for the readout, amplification and summation of signals of individual SiPMs. Timing characteristics of a large-scale detector prototype were studied in test-beams at the CERN PS. This technology is proposed for the ToF system of the ND280/T2K II upgrade at J-PARC and the timing detector of the SHiP experiment at the CERN SPS.Plastic scintillator detectors have been extensively used in particle physics experiments for decades. A large-scale detector is typically arranged as an array of staggered long bars which provide a fast trigger signal and/or particle identification via time-of-flight measurements. Scintillation light is collected by photosensors coupled to both ends of every bar. In this article, we present our study on a direct replacement of commonly used vacuum photomultiplier tubes (PMTs) by arrays of large-area silicon photomultipliers (SiPMs). An SiPM array which is directly coupled to the scintillator bulk, has a clear advantage with respect to a PMT: compactness, mechanical robustness, high PDE, low operation voltage, insensitivity to magnetic field, low material budget, possibility to omit light-guides. In this study, arrays of eight 6 x 6 mm2 area SiPMs were coupled to the ends of plastic scintillator bars with 1.68 m and 2.3 m lengths. An 8 channel SiPM anode readout ASIC (eMUSIC) was used for the readout, amplification and summation of signals of individual SiPMs. Timing characteristics of a large-scale detector prototype were studied in test-beams at the CERN PS. This technology is proposed for the ToF system of the ND280/T2K II upgrade at J-PARC and the timing detector of the SHiP experiment at the CERN SPS.arXiv:1901.07785JPS Conf. Proc. 27011005 (2019)oai:cds.cern.ch:26580292019
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Korzenev, A.
Betancourt, C.
Blondel, A.
Breton, D.
Datwyler, A.
Gascon, D.
Gomez, S.
Khabibullin, M.
Kudenko, Y.
Maalmi, J.
Mermod, P.
Noah, E.
Serra, N.
Sgalaberna, D.
Storaci, B.
Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title_full Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title_fullStr Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title_full_unstemmed Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title_short Plastic scintillator detector with the readout based on an array of large-area SiPMs for the ND280/T2K upgrade and SHiP experiments
title_sort plastic scintillator detector with the readout based on an array of large-area sipms for the nd280/t2k upgrade and ship experiments
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.7566/JPSCP.27.011005
http://cds.cern.ch/record/2658029
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