溴化铈单晶x射线检测及与各种光学传感器的光谱相容性评估

D. Linardatos, K. Velissarakos, I. Valais, G. Fountos, N. Kalyvas, C. Michail
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引用次数: 2

摘要

具有高光产率(LY)值的闪烁体对医疗成像应用,恶劣环境,无损检测(NDT)等都很感兴趣。CeBr3具有60000光子/MeV的LY,远高于其他高效材料,如Lu3Al5O12:Ce(25000光子/MeV);因此,它的x射线探测特性将是医学成像应用中值得研究的。研究了单晶CeBr3样品的x射线探测和吸收特性,以及其产生的光与各种光电传感器的兼容性。本研究计算了CeBr3的量子探测(QDE)和能量吸收效率(EAE)。结果与10 × 10 × 10 m m 3 Lu3Al5O12:Ce和CaF2:Eu单晶的数据进行了比较。CeBr3产生的测量光谱与商用光学传感器的光谱响应具有良好的相关性,对于各种光电阴极,如GaAs (94%), E-S20(95%),双碱和多碱(95-97%),以及平板位置敏感光电倍增管(95-99%),光谱匹配率均高于93%。当x射线管电压大于100 kVp时,CeBr3的能量吸收性能高于Lu3Al5O12:Ce和CaF2:Eu。在被检测的能量范围内,量子探测效率为100%。尽管CeBr3具有吸湿性,密度一般为5.1 g/cm3,但QDE、EAE和光谱相关结果在医学成像应用方面很有前景。
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Cerium Bromide Single-Crystal X-Ray Detection and Spectral Compatibility Assessment with Various Optical Sensors
Scintillators with high light yield (LY) values are of interest for medical imaging applications, in harsh environments, nondestructive testing (NDT), etc. CeBr3 has a LY of 60000 photons per MeV, a value much higher than other efficient materials, such as Lu3Al5O12:Ce (25000 photons/MeV); thus, its X-ray detection properties would be of interest to be examined for medical imaging applications. The X-ray detection and absorption properties of a single crystal CeBr3 sample along with the compatibility of its produced light with various optoelectronic sensors were examined. In this study, the quantum detection (QDE) and the energy absorption efficiency (EAE) of CeBr3 were calculated. The findings were compared with data for 10 × 10 × 10   m m 3 Lu3Al5O12:Ce and CaF2:Eu single crystals. The measured optical spectrum produced by CeBr3 was well correlated with the spectral response of commercial optical sensors, yielding spectral matching higher than 93% for various photocathodes, e.g., GaAs (94%), E-S20 (95%), and bialkali and multialkali (95-97%), as well as with flat panel position-sensitive photomultipliers (95-99%). The energy absorption properties of CeBr3 were found higher than those of Lu3Al5O12:Ce and CaF2:Eu for X-ray tube voltages greater than 100 kVp. The quantum detection efficiency was 100% across the examined energy range. Even though CeBr3 is hygroscopic and has a mediocre 5.1 g/cm3 density, the QDE, EAE, and spectral correlation results are promising for medical imaging applications.
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