首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Development of Proton Detection System with Thin Ruby Scintillator Insensitive to Neutrons and Gamma Rays for Neutron Lifetime Measurement
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Development of Proton Detection System with Thin Ruby Scintillator Insensitive to Neutrons and Gamma Rays for Neutron Lifetime Measurement

机译:中子寿命测量用薄红宝石闪烁体对中子和伽玛射线不敏感的质子检测系统的开发

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A proton detector for lifetime measurement of neutrons using a thin ruby scintillator which can be used under an environment of neutrons and γ-rays has been developed. The detector is almost insensitive to neutrons and γ-rays. This was confirmed by setting the detector adjacent to the ultra-cold neutron (UCN) facility installed in Kyoto University Reactor. When a single proton was injected into the scintillator, many scintillation signals were observed. The number of scintillation signals decreases with decreasing proton energy. Although the output signals generated by the scintillation and by the dark currents of a photomultiplier have approximately the same pulse heights, the proton can be detected by counting the signals within the time width corresponding to the decay time of scintillation. This neutron lifetime measurement system can be applied to the detection of particles other than protons.
机译:已经开发了用于使用薄红宝石闪烁体测量中子寿命的质子检测器,该薄红宝石闪烁器可以在中子和γ射线的环境下使用。该探测器几乎对中子和γ射线不敏感。通过将探测器安装在京都大学反应堆中安装的超冷中子(UCN)设施附近,可以证实这一点。当将单个质子注入闪烁器时,观察到许多闪烁信号。闪烁信号的数量随着质子能量的减少而减少。尽管由闪烁和光电倍增管的暗电流产生的输出信号具有近似相同的脉冲高度,但是可以通过在与闪烁的衰减时间相对应的时间宽度内对信号进行计数来检测质子。该中子寿命测量系统可以应用于质子以外的粒子的检测。

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