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《中国物理C》(英文)编辑部
2024年10月30日

The δ Ray Effect in Particle ldentification via Cherenkov Correlated Timing

  • The interference effect from δ electrons created by primary particle passing through radiator in Cherenkov Correlated Timing (CCT) technique is discussed, and the possible method to diminish this interference effect is proposed. The capability for π/K separation is given by Monte Carlo simulation for CCT design of the Beijing Tau-Charm Factory.
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  • [1] BaBar Collab. Letter of Intent for the Study of CP Violation and Heavy Flavor Physics at PEF-II. SLAC:SLAC-443, 1994. 1-325[2] Belle Collab. Letter of Intent for A Study of CP Violation in B Meson Decays. KEK:KEK Report 94-2,1994. 1-330[3] Institute of High Energy Physics, the Chinese Academy of Sciences. Feasibility Study Report on Beijing Tau-Charm Factory. Beijing: IHEP-BTCF Report-03, 1996. 1-303[4] Coyle P, et al. Workshop on Detector Issues for a High Luminosity B Factory at SLAC. SLAC-373, 1991[5] Eichler R Motivation and Design Study for a B Meson Factory With High Iurninosity. PSI Report, SIN-PR-86-13, 1986[6] Honscheid K, Selen M, Sivertz M. Particle Identification via Cherenkov Correlated Timing. Nucl Inst Meth, 1994, A343: 306-310[7] Hamamatsu. Photomultiplier Tubes and Assemblies for Scintillation Counting and High Energy Physics.Hamamatsu 1994. 1-28[8] Rossi B B. High Energy Particles. New York:Prentice-Hall Inc., 1952. 1-569[9] Selen M, Honscheid K Particle ID via Cerenkov Correlated Timing., CLEO Preprint, 1992, CBX92-116:l-22
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Get Citation
Zhu Yongsheng, Chen Jiangchuan and Cheng Baosen. The δ Ray Effect in Particle ldentification via Cherenkov Correlated Timing[J]. Chinese Physics C, 1998, 22(7): 577-586.
Zhu Yongsheng, Chen Jiangchuan and Cheng Baosen. The δ Ray Effect in Particle ldentification via Cherenkov Correlated Timing[J]. Chinese Physics C, 1998, 22(7): 577-586. shu
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Received: 1900-01-01
Revised: 1900-01-01
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The δ Ray Effect in Particle ldentification via Cherenkov Correlated Timing

    Corresponding author: Zhu Yongsheng,
  • Institute of High Energy Physics, The Chinese Academy of Sciences, Beijing 100039

Abstract: The interference effect from δ electrons created by primary particle passing through radiator in Cherenkov Correlated Timing (CCT) technique is discussed, and the possible method to diminish this interference effect is proposed. The capability for π/K separation is given by Monte Carlo simulation for CCT design of the Beijing Tau-Charm Factory.

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