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Characterization of the optical model of the T2K 3D segmented plastic scintillator detector unit cube

  • S. Abe
  • , I. Alekseev
  • , T. Arai
  • , T. Arihara
  • , S. Arimoto
  • , N. Babu
  • , V. Baranov
  • , L. Bartoszek
  • , L. Berns
  • , S. Bhattacharjee
  • , A. Blondel
  • , A. V. Boikov
  • , M. Buizza-Avanzini
  • , J. Capó
  • , J. Cayo
  • , J. Chakrani
  • , P. S. Chong
  • , A. Chvirova
  • , M. Danilov
  • , C. Davis
  • Yu I. Davydov, A. Dergacheva, N. Dokania, D. Douqa, T. A. Doyle, O. Drapier, A. Eguchi, J. Elias, D. Fedorova, S. Fedotov, D. Ferlewicz, Y. Fuji, Y. Furui, A. Gendotti, A. Germer, L. Giannessi, C. Giganti, V. Glagolev, J. Hu, K. Iwamoto, M. Jakkapu, C. Jesús-Valls, J. Y. Ji, C. K. Jung, H. Kakuno, S. P. Kasetti, M. Kawaue, M. Khabibullin, A. Khotjantsev, T. Kikawa, H. Kikutani, H. Kobayashi, T. Kobayashi, S. Kodama, M. Kolupanova, A. Korzenev, U. Kose, Y. Kudenko, S. Kuribayashi, T. Kutter, M. Lachat, K. Lachner, D. Last, N. Latham, D. Leon Silverio, B. Li, W. Li, Z. Li, C. Lin, L. S. Lin, S. Lin, T. Lux, K. Mahtani, L. Maret, D. A.Martinez Caicedo, S. Martynenko, T. Matsubara, C. Mauger, C. McGrew, J. McKean, A. Mefodiev, E. Miller, O. Mineev, A. L. Moreno, A. Muñoz, T. Nakadaira, K. Nakagiri, V. Nguyen, L. Nicola, E. Noah, T. Nosek, W. Okinaga, L. Osu, V. Paolone, S. Parsa, R. Pellegrino, M. A. Ramirez, M. Reh, C. Ricco, A. Rubbia, K. Sakashita, N. Sallin, F. Sanchez, T. Schefke, C. M. Schloesser, D. Sgalaberna, A. Shvartsman, N. Skrobova, A. J. Speers, I. A. Suslov, S. Suvorov, D. Svirida, S. Tairafune, H. Tanigawa, A. Teklu, V. V. Tereshchenko, M. Tzanov, I. I. Vasilyev, H. T. Wallace, N. Whitney, K. Wood, Y. H. Xu, G. Yang, N. Yershov, M. Yokoyama, Y. Yoshimoto, X. Zhao, H. Zheng, T. Zhu, P. Zilberman, E. D. Zimmerman
  • University of Tokyo
  • P.N. Lebedev Physical Institute of the Russian Academy of Sciences
  • Institute for Nuclear Research of the Russian Academy of Sciences
  • Tokyo Metropolitan University
  • Kyoto University
  • Louisiana State University
  • Joint Institute for Nuclear Research, Dubna
  • University of Colorado Boulder
  • Tohoku University
  • University of Geneva
  • Sorbonne Université
  • The Barcelona Institute of Science and Technology
  • University of Pennsylvania School of Arts and Sciences
  • Ip Paris
  • Stony Brook University
  • University of Rochester
  • High Energy Accelerator Research Organization (KEK)
  • ETH Zurich
  • Moscow Institute of Physics and Technology
  • National Research Nuclear University MEPhI
  • University of Warwick
  • King's College London
  • South Dakota School of Mines and Technology
  • University of Oxford
  • Imperial College London
  • National Centre for Nuclear Research (NCBJ)
  • University of Pittsburgh
  • Lancaster University
  • The University of Sheffield

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

The magnetized near detector (ND280) of the T2K long-baseline neutrino oscillation experiment has been recently upgraded aiming to satisfy the requirement of reducing the systematic uncertainty from measuring the neutrino–nucleus interaction cross section, which is the largest systematic uncertainty in the search for leptonic charge-parity symmetry violation. A key component of the upgrade is SuperFGD, a 3D segmented plastic scintillator detector made of approximately 2,000,000 optically-isolated 1cm3 cubes. The SuperFGD cube unit shows promising optical performance, including a high light yield of about 40 photoelectrons (p.e.) per channel, a low cube-to-cube crosstalk rate below 3%, and a sub-nanosecond time resolution of 0.96 ns. By combining tracking and stopping power measurements of final state particles, this novel detector enables precise 3D-imaging of GeV neutrino interactions with reduced systematic uncertainties. A detailed Geant4 based optical simulation of the SuperFGD building block, i.e. a plastic scintillating cube read out by three wavelength shifting fibers, has been developed and validated with the different datasets collected in various beam tests. In this manuscript the description of the optical model as well as the comparison with data are reported.

Keywords

  • Neutrino oscillations
  • Optical simulation
  • Particle detector
  • Plastic scintillator
  • T2K

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