首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Development of water Cerenkov detector for on-line proton rejection in Ξ~- hypernuclear spectroscopy via the (K~-,K~+) reaction
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Development of water Cerenkov detector for on-line proton rejection in Ξ~- hypernuclear spectroscopy via the (K~-,K~+) reaction

机译:通过(K〜-,K〜+)反应在Ξ〜-超核光谱中在线质子排斥的水切伦科夫检测仪的研制

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The missing mass spectroscopy of Ξ hypernuclei with the (K~-, K~+) reaction is planned to be performed at the J-PARC K1.8 beam line by using a new magnetic spectrometer, Strangeness -2 Spectrometer (S-2S). A Cerenkov detector with a radiation medium of pure water (refractive index of 1.33) is designed to be used for on-line proton rejection for a momentum range of 1.2-1.6 GeV/c in S-2S. Prototype water Cerenkov detectors were developed and tested with positron beams and cosmic rays to estimate their proton-rejection capability. We achieved an average number of photoelectrons of greater than 200 with the latest prototype for cosmic rays, which was stable during an expected beam time of one month. The performance of the prototype in the cosmic-ray test was well reproduced with a Monte Carlo simulation in which some input parameters were adjusted. Based on the Monte Carlo simulation, we expect to achieve > 90% proton-rejection efficiency while maintaining > 95% K~+ survival ratio in the whole S-2S acceptance. The performance satisfies the requirements to conduct the spectroscopic study of Ξ~-hypernuclei at J-PARC.
机译:计划使用新的电磁光谱仪-Strangeness -2 Spectrometer(S-2S)在J-PARC K1.8光束线上进行with(K〜-,K〜+)反应的Ξ超核的丢失质谱。具有纯水辐射介质(折射率1.33)的切伦科夫探测器设计用于在线质子排斥,在S-2S中动量范围为1.2-1.6 GeV / c。开发了原型水切伦科夫探测器,并用正电子束和宇宙射线进行了测试,以评估其质子排斥能力。最新的宇宙射线原型使我们获得的平均光电子数量大于200,该原型在预期的一个月光束时间内保持稳定。原型在宇宙射线测试中的性能通过蒙特卡罗模拟得到了很好的再现,其中一些输入参数得到了调整。基于蒙特卡洛模拟,我们期望在整个S-2S验收中实现> 90%的质子排斥效率,同时保持> 95%的K +存活率。该性能满足在J-PARC上进行Ξ〜超核的光谱研究的要求。

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