Kaewkhao J, Limkitjaroenporn P, Chaiphaksa W, Kim H J
Physics Program, Faculty of Science and Technology, Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand; Center of Excellence in Glass Technology and Materials Science (CEGM), Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand.
Physics Program, Faculty of Science and Technology, Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand; Center of Excellence in Glass Technology and Materials Science (CEGM), Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand.
Appl Radiat Isot. 2016 Sep;115:221-226. doi: 10.1016/j.apradiso.2016.06.030. Epub 2016 Jun 28.
In this study, the CCT technique and nuclear instrument module (NIM) setup for the measurements of coincidence electron energy spectra of calcium molybdate (CaMoO4) and cerium doped gadolinium aluminium gallium garnet (Gd3Al2Ga3O12:Ce or GAGG:Ce) scintillation crystals were carried out. The (137)Cs irradiated gamma rays with an energy (Eγ) of 662keV was used as a radioactive source. The coincidence electron energy spectra were recorded at seven scattering angles of 30°-120°. It was found that seven corresponding electron energies were in the range of 100.5-435.4keV. The results show that, for all electron energies, the electron energy peaks of CaMoO4 crystal yielded higher number of counts than those of GAGG:Ce crystal. The electron energy resolution, the light yield and non-proportionality were also determined. It was found that the energy resolutions are inverse proportional to the square root of electron energy for both crystals. Furthermore, the results show that the light yield of GAGG:Ce crystal is much higher than that of CaMoO4 crystal. It was also found that both CaMoO4 and GAGG:Ce crystals demonstrated good proportional property in the electron energy range of 260-435.4keV.
在本研究中,开展了用于测量钼酸钙(CaMoO4)和铈掺杂钆铝镓石榴石(Gd3Al2Ga3O12:Ce或GAGG:Ce)闪烁晶体符合电子能谱的CCT技术和核仪器模块(NIM)设置。使用能量(Eγ)为662keV的(137)Cs辐照伽马射线作为放射源。在30°-120°的七个散射角处记录符合电子能谱。发现七个相应的电子能量在100.5-435.4keV范围内。结果表明,对于所有电子能量,CaMoO4晶体的电子能量峰产生的计数比GAGG:Ce晶体的多。还测定了电子能量分辨率、光输出和非比例性。发现两种晶体的能量分辨率均与电子能量的平方根成反比。此外,结果表明GAGG:Ce晶体的光输出远高于CaMoO4晶体。还发现CaMoO4和GAGG:Ce晶体在260-435.4keV的电子能量范围内均表现出良好的比例特性。