KOTO-II at J-PARC is proposed to extend the search for the ultra-rare decay KL → π 0 νν̄ by operating at substantially higher beam intensity than KOTO. In this regime, the Beam Hole Photon Veto (BHPV) must provide excellent timing performance and excellent γ/hadron discrimination to identify background photons and beam-induced activity. Given the time resolution of the lead-aerogel Cherenkov BHPV used in KOTO, a ∼19% nominal beam loss is expected under KOTO-II conditions. As an alternative, we propose a compact and highly granular Small Angle Calorimeter (SAC) based on ultra-fast lead-tungstate crystals read out with fast photomultiplier tubes, aiming to improve timing and reduce accidental veto losses. A SAC prototype consisting of two 3 × 3 PWO-UF crystal layers was tested at the CERN PS T9 beamline with Hamamatsu R9880 and R14755 metal-channel photomultipliers. In parallel, the crystals were characterized with high-resolution X-ray diffraction to quantify their orientation and enable measurements with aligned crystals. We present an overview of the detector R&D and the first beam test results on energy response and time resolution.

Ultra-fast Small Angle Calorimeter for photon detection at KOTO II

Prest, M.;
2026-01-01

Abstract

KOTO-II at J-PARC is proposed to extend the search for the ultra-rare decay KL → π 0 νν̄ by operating at substantially higher beam intensity than KOTO. In this regime, the Beam Hole Photon Veto (BHPV) must provide excellent timing performance and excellent γ/hadron discrimination to identify background photons and beam-induced activity. Given the time resolution of the lead-aerogel Cherenkov BHPV used in KOTO, a ∼19% nominal beam loss is expected under KOTO-II conditions. As an alternative, we propose a compact and highly granular Small Angle Calorimeter (SAC) based on ultra-fast lead-tungstate crystals read out with fast photomultiplier tubes, aiming to improve timing and reduce accidental veto losses. A SAC prototype consisting of two 3 × 3 PWO-UF crystal layers was tested at the CERN PS T9 beamline with Hamamatsu R9880 and R14755 metal-channel photomultipliers. In parallel, the crystals were characterized with high-resolution X-ray diffraction to quantify their orientation and enable measurements with aligned crystals. We present an overview of the detector R&D and the first beam test results on energy response and time resolution.
2026
2026
Calorimeter methods; Calorimeters; Particle detectors; Photon detectors for UV, visible and IR photons (solid-state) (PIN diodes, APDs, Si-PMTs, G-APDs, CCDs, EBCCDs, EMCCDs, CMOS imagers, etc)
Fedeli, P.; Bandiera, L.; Canale, N.; Carsi, S.; Cavallina, M.; De Salvator, D.; Forlani, A.; Francesconi, M.; Gatta, M.; Gianoli, A.; Guidi, V.; Lenc...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11383/2214792
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