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首页> 外文期刊>IEEE Transactions on Nuclear Science >Measurement of LYSO Intrinsic Light Yield Using Electron Excitation
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Measurement of LYSO Intrinsic Light Yield Using Electron Excitation

机译:用电子激发测量LYSO本征光的产率

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摘要

The determination of the intrinsic light yield () of scintillating crystals, i.e. number of optical photons created per amount of energy deposited, constitutes a key factor in order to characterize and optimize their energy and time resolution. However, until now measurements of this quantity are affected by large uncertainties and often rely on corrections for bulk absorption and surface/edge state. The novel idea presented in this contribution is based on the confinement of the scintillation emission in the central upper part of a 10 mm cubic crystal using a 1.5 MeV electron beam with diameter of 1 mm. A black non-reflective pinhole aligned with the excitation point is used to fix the light extraction solid angle (narrower than total reflection angle), which then sets a light cone travel path through the crystal. The final number of photoelectrons detected using a Hamamatsu R2059 photomultiplier tube (PMT) was corrected for the extraction solid angle, the Fresnel reflection coefficient and quantum efficiency (QE) of the PMT. The total number of optical photons produced per energy deposited was found to be (syst) (stat) for LYSO. Simulations using Geant4 were successfully compared to light output measurements of section crystals with lengths of 5–30 mm, in order to validate the light transport model and set a limit on Light Transfer Efficiency estimations.
机译:闪烁晶体的固有光产率()的确定,即每沉积的能量产生的光子的数量,是表征和优化其能量和时间分辨率的关键因素。然而,直到现在,该量的测量还受到很大的不确定性的影响,并且通常依赖于对体积吸收和表面/边缘状态的校正。本贡献中提出的新想法是基于使用直径为1 mm的1.5 MeV电子束将闪烁发射限制在10 mm立方晶体的中央上部中的。与激发点对准的黑色非反射针孔用于固定光提取立体角(比全反射角窄),然后设置穿过晶体的光锥传播路径。使用Hamamatsu R2059光电倍增管(PMT)探测到的最终光电子数已针对PMT的萃取立体角,菲涅耳反射系数和量子效率(QE)进行了校正。对于LYSO,发现每沉积的能量产生的光子总数为(syst)(stat)。使用Geant4进行的模拟已成功与长度为5–30毫米的截面晶体的光输出测量结果进行了比较,以验证光传输模型并设置光传输效率估算的极限。

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