Photon-Veto Counters at the Outer Edge of the Endcap Calorimeter for the KOTO Experiment

The Outer-Edge Veto (OEV) counter subsystem for extra-photon detection from the backgrounds for the? \(K^0_L\rightarrow\pi^0\nu\bar{\nu}\) decay is located at the outer edge of the endcap CsI calorimeter of the KOTO experiment at J-PARC. The subsystem is composed of 44 counters with different cross-...

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Veröffentlicht in:arXiv.org 2015-05
Hauptverfasser: Matsumura, T, Shinkawa, T, Yokota, H, Iwai, E, Komatsubara, T K, Lee, J W, Lim, G Y, J Ma, Masuda, T, Nanjo, H, Nomura, T, Odani, Y, Ri, Y D, Shiomi, K, Sugiyama, Y, Suzuki, S, Togawa, M, Wah, Y, Watanabe, H, Yamanaka, T
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Sprache:eng
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Zusammenfassung:The Outer-Edge Veto (OEV) counter subsystem for extra-photon detection from the backgrounds for the? \(K^0_L\rightarrow\pi^0\nu\bar{\nu}\) decay is located at the outer edge of the endcap CsI calorimeter of the KOTO experiment at J-PARC. The subsystem is composed of 44 counters with different cross-sectional shapes. All counters are made of lead and scintillator plates and read out through wavelength-shifting fibers. In this paper, we discuss the design and performances of the OEV counters under heavy load (\(\sim8\) tons/m\(^2\)) in vacuum. For 1-MeV energy deposit, the average light yield and time resolution are 20.9 photo-electrons and 1.5 ns, respectively. Although no pronounced peak by minimum-ionizing particles is observed in the energy distributions, an energy calibration method with cosmic rays works well in monitoring the gain stability with an accuracy of a few percent.
ISSN:2331-8422
DOI:10.48550/arxiv.1409.8367