Characterisation of plastic scintillator paddles and lightweight MWPCs for the MID subsystem of ALICE 3

Author:

Alfaro Ruben,Alvarado Hernández Mauricio,Bencédi GyulaORCID,Cabanillas Noris Juan CarlosORCID,Díaz Maldonado Marco AntonioORCID,Duarte Galvan CarlosORCID,Fernández Téllez ArturoORCID,Gábor Barnaföldi GergelyORCID,Gera ÁdámORCID,Grabsky VarlenORCID,Hamar GergőORCID,Herrera Corral Gerardo,León Monzón IldefonsoORCID,Martínez García Josué,Martínez Hernandez Mario Iván,Muñoz Méndez Jesús EduardoORCID,Nagy RichárdORCID,Narcio Laveaga Rafael ÁngelORCID,Ortiz AntonioORCID,Rodríguez-Cahuantzi MarioORCID,Rojas Torres SolangelORCID,Szollosova TimeaORCID,Patiño Salazar Miguel Enrique,Pazarán García Jared,Regules Medel Hector DavidORCID,Tejeda Muñoz GuillermoORCID,Vargas Torres PaolaORCID,Varga DezsőORCID,Vértesi RóbertORCID,Vasquez Beltran Yael AntonioORCID,Vázquez Villamar Carlos Rafael,Yoval Pozos IrandhenyORCID

Abstract

Abstract The ALICE collaboration is proposing a completely new detector, ALICE 3, for operation during the LHC Runs 5 and 6. One of the ALICE 3 subsystems is the Muon IDentifier detector (MID), which has to be optimised to be efficient for the reconstruction of  J/ψ at rest (muons down to p T ≈ 1.5 GeV/c) for |η| < 1.3. Given the modest particle flux expected in the MID of a few Hz/cm2, technologies like plastic scintillator bars (≈ 1 m length) equipped with wavelength-shifting fibers and silicon photomultiplier readout, and lightweight Multi-Wire Proportional Chambers (MWPCs) are under investigation. To this end, different plastic scintillator paddles and MWPCs were studied at the CERN T10 test beam facility. This paper reports on the performance of the scintillator prototypes tested at different beam momenta (from 0.5 GeV/c up to 6 GeV/c) and positions (horizontal, vertical, and angular scans). The MWPCs were tested at different momenta (from 0.5 GeV/c to 10 GeV/c) and beam intensities, their efficiency and position resolutions were verified beyond the particle rates expected with the MID in ALICE 3.

Publisher

IOP Publishing

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