Design and implementation of the new scintillation light detection system of ICARUS T600

ICARUS T600 is the far detector of the Short Baseline Neutrino program at Fermilab (U.S.A.), which foresees three Liquid Argon Time Projection Chambers along the Booster Neutrino Beam line to search for LSND-like sterile neutrino signal. The T600 detector underwent a significant overhauling process...

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Veröffentlicht in:Journal of instrumentation 2020-10, Vol.15 (10), p.T10007-T10007
Hauptverfasser: Ali-Mohammadzadeh, B., Babicz, M., Badgett, W., Bagby, L., Bellini, V., Benocci, R., Bonesini, M., Braggiotti, A., Centro, S., Chatterjee, A., Cocco, A.G., Diwan, M., Falcone, A., Farnese, C., Fava, A., Gibin, D., Guglielmi, A., Ketchum, W., Kose, U., Menegolli, A., Meng, G., Montanari, C., Nessi, M., Pietropaolo, F., Rappoldi, A., Raselli, G.L., Rossella, M., Rubbia, C., Sala, P., Scaramelli, A., Sergiampietri, F., Spanu, M., Torretta, D., Torti, M., Tortorici, F., Varanini, F., Ventura, S., Vignoli, C., Zhang, A., Zani, A.
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container_end_page T10007
container_issue 10
container_start_page T10007
container_title Journal of instrumentation
container_volume 15
creator Ali-Mohammadzadeh, B.
Babicz, M.
Badgett, W.
Bagby, L.
Bellini, V.
Benocci, R.
Bonesini, M.
Braggiotti, A.
Centro, S.
Chatterjee, A.
Cocco, A.G.
Diwan, M.
Falcone, A.
Farnese, C.
Fava, A.
Gibin, D.
Guglielmi, A.
Ketchum, W.
Kose, U.
Menegolli, A.
Meng, G.
Montanari, C.
Nessi, M.
Pietropaolo, F.
Rappoldi, A.
Raselli, G.L.
Rossella, M.
Rubbia, C.
Sala, P.
Scaramelli, A.
Sergiampietri, F.
Spanu, M.
Torretta, D.
Torti, M.
Tortorici, F.
Varanini, F.
Ventura, S.
Vignoli, C.
Zhang, A.
Zani, A.
description ICARUS T600 is the far detector of the Short Baseline Neutrino program at Fermilab (U.S.A.), which foresees three Liquid Argon Time Projection Chambers along the Booster Neutrino Beam line to search for LSND-like sterile neutrino signal. The T600 detector underwent a significant overhauling process at CERN, introducing new technological developments while maintaining the already achieved performances. The realization of a new liquid argon scintillation light detection system is a primary task of the detector overhaul. As the detector will be subject to a huge flux of cosmic rays, the light detection system should allow the 3D reconstruction of events contributing to the identification of neutrino interactions in the beam spill gate. The design and implementation of the new scintillation light detection system of ICARUS T600 is described.
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The design and implementation of the new scintillation light detection system of ICARUS T600 is described.</description><subject>Argon</subject><subject>Cosmic rays</subject><subject>INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY</subject><subject>Neutrino beams</subject><subject>Neutrinos</subject><subject>Noble liquid detectors (scintillation, ionization, double-phase)</subject><subject>Overhauling</subject><subject>Photon detectors for UV, visible and IR photons (gas) (gas-photocathodes, solidphotocathodes)</subject><subject>Scintillation</subject><subject>Scintillators, scintillation and light emission processes (solid, gas and liquid scintillators)</subject><subject>Sensors</subject><subject>Signal processing</subject><subject>Time projection Chambers 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subjects Argon
Cosmic rays
INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY
Neutrino beams
Neutrinos
Noble liquid detectors (scintillation, ionization, double-phase)
Overhauling
Photon detectors for UV, visible and IR photons (gas) (gas-photocathodes, solidphotocathodes)
Scintillation
Scintillators, scintillation and light emission processes (solid, gas and liquid scintillators)
Sensors
Signal processing
Time projection Chambers (TPC)
title Design and implementation of the new scintillation light detection system of ICARUS T600
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