BibTex format
@article{Alt:2026:01/P01041,
author = {Alt, C and Blanchet, A and Bordoni, S and Collard, P and Bui, TH and Bui, MH and Ha, G and Jesús-Valls, C and Kasturi, VS and Klustová, A and Korzenev, A and Le, TA and Lux, T and Nguyen, AD and Nguyen, DT and Nguyen, H and Samani, S and Sanchez, F and Ta, M and Thaiduc, T and Villa, E},
doi = {01/P01041},
journal = {Journal of Instrumentation},
title = {Modeling scintillation photon transport and reconstruction algorithms for the time-of-flight detector in the T2K neutrino experiment},
url = {http://dx.doi.org/10.1088/1748-0221/21/01/P01041},
volume = {21},
year = {2026}
}
RIS format (EndNote, RefMan)
TY - JOUR
AB - The T2K ND280 upgrade aims to reduce the systematic uncertainty of the CP-violating phase,δ <inf>CP</inf>, to reject non-CP violation hypothesis at 3σconfidence level. A crucial component of the ND280 upgrade, alongside the Super Fine Grained Detector (SuperFGD) and two High-Angle Time Projection Chambers (TPCs), is the Time-of-Flight (ToF) detector, which significantly enhances background rejection and particle identification capabilities. The ToF detector features six modules in a cube configuration, each with 20 plastic scintillator bars measuring 220×12×1 cm<sup>3</sup>and is equipped with Silicon Photomultiplier (MPPC) arrays at both ends to capture scintillation light. This letter outlines the modelling of the detector response and the signal reconstruction process.
AU - Alt,C
AU - Blanchet,A
AU - Bordoni,S
AU - Collard,P
AU - Bui,TH
AU - Bui,MH
AU - Ha,G
AU - Jesús-Valls,C
AU - Kasturi,VS
AU - Klustová,A
AU - Korzenev,A
AU - Le,TA
AU - Lux,T
AU - Nguyen,AD
AU - Nguyen,DT
AU - Nguyen,H
AU - Samani,S
AU - Sanchez,F
AU - Ta,M
AU - Thaiduc,T
AU - Villa,E
DO - 01/P01041
PY - 2026///
TI - Modeling scintillation photon transport and reconstruction algorithms for the time-of-flight detector in the T2K neutrino experiment
T2 - Journal of Instrumentation
UR - http://dx.doi.org/10.1088/1748-0221/21/01/P01041
VL - 21
ER -