首页> 外文会议>SPIE Conference on Asia Pacific Optical Sensors >Development of fiber-optic radiation sensor for gamma-ray spectroscopy: Comparative study on efficiency of LYSO:Ce, YSO:Ce, and BGO scintillation crystals
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Development of fiber-optic radiation sensor for gamma-ray spectroscopy: Comparative study on efficiency of LYSO:Ce, YSO:Ce, and BGO scintillation crystals

机译:γ光谱光纤辐射传感器的研制:Lyso:Ce,YSO和BGO闪烁晶体效率对比研究

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In this study, we fabricated a fiber-optic radiation sensor using three kinds of inorganic scintillation crystals with the same dimension, such as LYSO:Ce, YSO:Ce, and BGO. Gamma-ray energy spectra for Cs-137 were measured with three kinds of inorganic scintillators to select an optimum scintillator that is suitable to use for gamma-ray energy spectroscopy. The total counts of the scintillating lights, were also obtained according to the activity of Cs-137. As a result, the energy spectra measured using the three scintillators were clearly different, thereby they showed clear distinction about the energy resolution and position of the inherent photopeak of Cs-137. Although all scintillators had a linear response over the activity of Cs-137, we selected LYSO:Ce as an optimum scintillator because it provided good energy resolution and the highest light output in our experimental setup.
机译:在这项研究中,我们使用具有相同维度的三种无机闪烁晶体制成光纤辐射传感器,例如Lyso:Ce,Yso:Ce和BGO。 CS-137的γ射线能谱用三种无机闪烁体测量,以选择适合用于γ射线能谱的最佳闪烁体。 还根据CS-137的活性获得闪烁灯的总数。 结果,使用三个闪烁体测量的能谱显然是不同的,从而显然地区分了CS-137的固有光视局的能量分辨率和位置。 虽然所有闪烁体对CS-137的活动进行了线性响应,但我们选择了Lyso:Ce作为最佳闪烁体,因为它提供了良好的能量分辨率和我们的实验设置中的最高光输出。

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