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首页> 外文期刊>IEEE Transactions on Nuclear Science >Development of Transparent Ceramic Ce-Doped Gadolinium Garnet Gamma Spectrometers
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Development of Transparent Ceramic Ce-Doped Gadolinium Garnet Gamma Spectrometers

机译:透明掺铈铈Ceramic石榴石伽马能谱仪的研制

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Transparent polycrystalline ceramic scintillators based on the garnet structure and incorporating gadolinium for high stopping power are being developed for use in gamma spectrometers. Optimization of energy resolution for gamma spectroscopy involves refining the material composition for high stopping and high light yield, developing ceramics fabrication methodology for material homogeneity, as well as selecting the size and geometry of the scintillator to match the photodetector characteristics and readout electronics. We have demonstrated energy resolution of 4% at 662 keV for 0.05 cm $^{3}$ GYGAG(Ce) ceramics with photodiode readout, and 4.9% resolution at 662 keV for 18 cm $^{3}$ GYGAG(Ce) ceramics and PMT readout. Comparative gamma spectra acquired with GYGAG(Ce) and NaI(Tl) depict the higher resolution of GYGAG(Ce) for radioisotope identification applications. Light yield non-proportionality of garnets fabricated following different methods reveal that the fundamental shapes of the light yield dependence on energy are not intrinsic to the crystal structure, but may instead depend on trap state distributions. With exposure to 9 MeV Brehmsstrahlung radiation, we also find that GYGAG(Ce) ceramics exhibit excellent radiation hardness.
机译:基于石榴石结构并结合了for的高阻功率透明多晶陶瓷闪烁体正在开发用于伽马能谱仪。伽马能谱的能量分辨率的优化涉及精炼材料成分以实现高光阑和高光产出,开发陶瓷制造方法以实现材料均匀性,以及选择闪烁器的尺寸和几何形状以匹配光电探测器的特性和读出电子器件。我们已经证明,对于662 cmV,0.05 cm的能量分辨率为4%。<公式公式==“ inline”> $ ^ {3} $ $ ^ {3} $ GYGAG(Ce)陶瓷和PMT读出。用GYGAG(Ce)和NaI(Tl)获得的比较伽玛光谱描述了用于放射性同位素识别应用的GYGAG(Ce)的更高分辨率。采用不同方法制造的石榴石的光产率不成比例,表明光产率对能量的依赖性的基本形状不是晶体结构固有的,而是取决于陷阱态的分布。暴露于9 MeV的Bre致辐射,我们还发现GYGAG(Ce)陶瓷表现出出色的辐射硬度。

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