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Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber

The 35-ton prototype for the Deep Underground Neutrino Experiment far detector was a single-phase liquid argon time projection chamber with an integrated photon detector system, all situated inside a membrane cryostat. The detector took cosmic-ray data for six weeks during the period of February 1,...

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Autores principales: Adams, D.L., Alion, T., Anderson, J.T., Bagby, L., Baird, M., Barr, G., Barros, N., Biery, K., Blake, A., Blaufuss, E., Boone, T., Booth, A., Brailsford, D., Buchanan, N., Chatterjee, A., Convery, M., Davies, J., Dealtry, T., DeLurgio, P., Deuerling, G., Dharmapalan, R., Djurcic, Z., Drake, G., Eberly, B., Freeman, J., Glavin, S., Gomes, R.A., Goodman, M.C., Graham, M., Hahn, A., Haigh, J.T., Hartnell, J., Higuera, A., Himmel, A., Insler, J., Jacobsen, J., Junk, T., Kirby, B., Klein, J., Kudryavtsev, V.A., Kutter, T., Li, Y., Li, X., Lin, S., Martin-Albo, J., McConkey, N., Moura, C.A., Mufson, S., Nicholls, T.C., Nowak, J., Oberling, M., Paley, J., Qian, X., Raaf, J.L., Rivera, D., Santucci, G., Sinev, G., Spooner, N.J. C., Stancari, M., Stancu, I., Stefan, D., Stewart, J., Stock, J., Strauss, T., Sulej, R., Sun, Y., Thiesse, M., Thompson, L.F., Tsai, Y.T., Wallbank, M., Warburton, T.K., Warner, D., Whittington, D., Wilson, R.J., Worcester, M., Worcester, E., Yang, T., Zhang, C.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/13/06/P06022
http://cds.cern.ch/record/2312407
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author Adams, D.L.
Alion, T.
Anderson, J.T.
Bagby, L.
Baird, M.
Barr, G.
Barros, N.
Biery, K.
Blake, A.
Blaufuss, E.
Boone, T.
Booth, A.
Brailsford, D.
Buchanan, N.
Chatterjee, A.
Convery, M.
Davies, J.
Dealtry, T.
DeLurgio, P.
Deuerling, G.
Dharmapalan, R.
Djurcic, Z.
Drake, G.
Eberly, B.
Freeman, J.
Glavin, S.
Gomes, R.A.
Goodman, M.C.
Graham, M.
Hahn, A.
Haigh, J.T.
Hartnell, J.
Higuera, A.
Himmel, A.
Insler, J.
Jacobsen, J.
Junk, T.
Kirby, B.
Klein, J.
Kudryavtsev, V.A.
Kutter, T.
Li, Y.
Li, X.
Lin, S.
Martin-Albo, J.
McConkey, N.
Moura, C.A.
Mufson, S.
Nicholls, T.C.
Nowak, J.
Oberling, M.
Paley, J.
Qian, X.
Raaf, J.L.
Rivera, D.
Santucci, G.
Sinev, G.
Spooner, N.J. C.
Stancari, M.
Stancu, I.
Stefan, D.
Stewart, J.
Stock, J.
Strauss, T.
Sulej, R.
Sun, Y.
Thiesse, M.
Thompson, L.F.
Tsai, Y.T.
Wallbank, M.
Warburton, T.K.
Warner, D.
Whittington, D.
Wilson, R.J.
Worcester, M.
Worcester, E.
Yang, T.
Zhang, C.
author_facet Adams, D.L.
Alion, T.
Anderson, J.T.
Bagby, L.
Baird, M.
Barr, G.
Barros, N.
Biery, K.
Blake, A.
Blaufuss, E.
Boone, T.
Booth, A.
Brailsford, D.
Buchanan, N.
Chatterjee, A.
Convery, M.
Davies, J.
Dealtry, T.
DeLurgio, P.
Deuerling, G.
Dharmapalan, R.
Djurcic, Z.
Drake, G.
Eberly, B.
Freeman, J.
Glavin, S.
Gomes, R.A.
Goodman, M.C.
Graham, M.
Hahn, A.
Haigh, J.T.
Hartnell, J.
Higuera, A.
Himmel, A.
Insler, J.
Jacobsen, J.
Junk, T.
Kirby, B.
Klein, J.
Kudryavtsev, V.A.
Kutter, T.
Li, Y.
Li, X.
Lin, S.
Martin-Albo, J.
McConkey, N.
Moura, C.A.
Mufson, S.
Nicholls, T.C.
Nowak, J.
Oberling, M.
Paley, J.
Qian, X.
Raaf, J.L.
Rivera, D.
Santucci, G.
Sinev, G.
Spooner, N.J. C.
Stancari, M.
Stancu, I.
Stefan, D.
Stewart, J.
Stock, J.
Strauss, T.
Sulej, R.
Sun, Y.
Thiesse, M.
Thompson, L.F.
Tsai, Y.T.
Wallbank, M.
Warburton, T.K.
Warner, D.
Whittington, D.
Wilson, R.J.
Worcester, M.
Worcester, E.
Yang, T.
Zhang, C.
author_sort Adams, D.L.
collection CERN
description The 35-ton prototype for the Deep Underground Neutrino Experiment far detector was a single-phase liquid argon time projection chamber with an integrated photon detector system, all situated inside a membrane cryostat. The detector took cosmic-ray data for six weeks during the period of February 1, 2016 to March 12, 2016. The performance of the photon detection system was checked with these data. An installed photon detector was demonstrated to measure the arrival times of cosmic-ray muons with a resolution better than 32 ns, limited by the timing of the trigger system. A measurement of the timing resolution using closely-spaced calibration pulses yielded a resolution of 15 ns for pulses at a level of 6 photo-electrons. Scintillation light from cosmic-ray muons was observed to be attenuated with increasing distance with a characteristic length of 155 ± 28 cm.
id cern-2312407
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-23124072022-05-26T02:45:16Zdoi:10.1088/1748-0221/13/06/P06022http://cds.cern.ch/record/2312407engAdams, D.L.Alion, T.Anderson, J.T.Bagby, L.Baird, M.Barr, G.Barros, N.Biery, K.Blake, A.Blaufuss, E.Boone, T.Booth, A.Brailsford, D.Buchanan, N.Chatterjee, A.Convery, M.Davies, J.Dealtry, T.DeLurgio, P.Deuerling, G.Dharmapalan, R.Djurcic, Z.Drake, G.Eberly, B.Freeman, J.Glavin, S.Gomes, R.A.Goodman, M.C.Graham, M.Hahn, A.Haigh, J.T.Hartnell, J.Higuera, A.Himmel, A.Insler, J.Jacobsen, J.Junk, T.Kirby, B.Klein, J.Kudryavtsev, V.A.Kutter, T.Li, Y.Li, X.Lin, S.Martin-Albo, J.McConkey, N.Moura, C.A.Mufson, S.Nicholls, T.C.Nowak, J.Oberling, M.Paley, J.Qian, X.Raaf, J.L.Rivera, D.Santucci, G.Sinev, G.Spooner, N.J. C.Stancari, M.Stancu, I.Stefan, D.Stewart, J.Stock, J.Strauss, T.Sulej, R.Sun, Y.Thiesse, M.Thompson, L.F.Tsai, Y.T.Wallbank, M.Warburton, T.K.Warner, D.Whittington, D.Wilson, R.J.Worcester, M.Worcester, E.Yang, T.Zhang, C.Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamberhep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesThe 35-ton prototype for the Deep Underground Neutrino Experiment far detector was a single-phase liquid argon time projection chamber with an integrated photon detector system, all situated inside a membrane cryostat. The detector took cosmic-ray data for six weeks during the period of February 1, 2016 to March 12, 2016. The performance of the photon detection system was checked with these data. An installed photon detector was demonstrated to measure the arrival times of cosmic-ray muons with a resolution better than 32 ns, limited by the timing of the trigger system. A measurement of the timing resolution using closely-spaced calibration pulses yielded a resolution of 15 ns for pulses at a level of 6 photo-electrons. Scintillation light from cosmic-ray muons was observed to be attenuated with increasing distance with a characteristic length of 155 ± 28 cm.The 35-ton prototype for the Deep Underground Neutrino Experiment far detector was a single-phase liquid argon time projection chamber with an integrated photon detector system, all situated inside a membrane cryostat. The detector took cosmic-ray data for six weeks during the period of February 1, 2016 to March 12, 2016. The performance of the photon detection system was checked with these data. An installed photon detector was demonstrated to measure the arrival times of cosmic-ray muons with a resolution better than 32 ns, limited by the timing of the trigger system. A measurement of the timing resolution using closely-spaced calibration pulses yielded a resolution of 15 ns for pulses at a level of 6 photo-electrons. Scintillation light from cosmic-ray muons was observed to be attenuated with increasing distance with a characteristic length of $155 \pm 28$ cm.arXiv:1803.06379FERMILAB-PUB-18-124-ND-TDoai:cds.cern.ch:23124072018-03-16
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Adams, D.L.
Alion, T.
Anderson, J.T.
Bagby, L.
Baird, M.
Barr, G.
Barros, N.
Biery, K.
Blake, A.
Blaufuss, E.
Boone, T.
Booth, A.
Brailsford, D.
Buchanan, N.
Chatterjee, A.
Convery, M.
Davies, J.
Dealtry, T.
DeLurgio, P.
Deuerling, G.
Dharmapalan, R.
Djurcic, Z.
Drake, G.
Eberly, B.
Freeman, J.
Glavin, S.
Gomes, R.A.
Goodman, M.C.
Graham, M.
Hahn, A.
Haigh, J.T.
Hartnell, J.
Higuera, A.
Himmel, A.
Insler, J.
Jacobsen, J.
Junk, T.
Kirby, B.
Klein, J.
Kudryavtsev, V.A.
Kutter, T.
Li, Y.
Li, X.
Lin, S.
Martin-Albo, J.
McConkey, N.
Moura, C.A.
Mufson, S.
Nicholls, T.C.
Nowak, J.
Oberling, M.
Paley, J.
Qian, X.
Raaf, J.L.
Rivera, D.
Santucci, G.
Sinev, G.
Spooner, N.J. C.
Stancari, M.
Stancu, I.
Stefan, D.
Stewart, J.
Stock, J.
Strauss, T.
Sulej, R.
Sun, Y.
Thiesse, M.
Thompson, L.F.
Tsai, Y.T.
Wallbank, M.
Warburton, T.K.
Warner, D.
Whittington, D.
Wilson, R.J.
Worcester, M.
Worcester, E.
Yang, T.
Zhang, C.
Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title_full Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title_fullStr Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title_full_unstemmed Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title_short Photon detector system performance in the DUNE 35-ton prototype liquid argon time projection chamber
title_sort photon detector system performance in the dune 35-ton prototype liquid argon time projection chamber
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/13/06/P06022
http://cds.cern.ch/record/2312407
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