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Design, Commissioning and Performance of the PIBETA Detector at PSI

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arxiv hep-ex/0312017 v1 pith:T2PWTOSA submitted 2003-12-04 hep-ex physics.ins-det

classification hep-exphysics.ins-det
keywords detectorplasticactivebeamcalorimetercommissioningcosmiccylindrical
verification ladder T0 review T1 audit T2 compute T3 formal

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We describe the design, construction and performance of the PIBETA detector built for the precise measurement of the branching ratio of pion beta decay, pi+ -> pi0 e+ nu, at the Paul Scherrer Institute. The central part of the detector is a 240-module spherical pure CsI calorimeter covering 3*pi sr solid angle. The calorimeter is supplemented with an active collimator/beam degrader system, an active segmented plastic target, a pair of low-mass cylindrical wire chambers and a 20-element cylindrical plastic scintillator hodoscope. The whole detector system is housed inside a temperature-controlled lead brick enclosure which in turn is lined with cosmic muon plastic veto counters. Commissioning and calibration data were taken during two three-month beam periods in 1999/2000 with pi+ stopping rates between 1.3*E3 pi+/s and 1.3*E6 pi+/s. We examine the timing, energy and angular detector resolution for photons, positrons and protons in the energy range of 5-150 MeV, as well as the response of the detector to cosmic muons. We illustrate the detector signatures for the assorted rare pion and muon decays and their associated backgrounds.

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  1. Constraining axion-like particles from rare pion decays

    hep-ph 2019-08 accept novelty 6.0 of 10

    Existing PIENU and PIBETA rare pion decay data constrain ALP-pion mixing to sin^2 theta below about 1e-5 for ALP masses from 10 MeV to the pion mass.

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