Bangaru S, Saradha K, Muralidharan G
Department of Physics, Arignar Anna Government Arts College, Namakkal, 637002, India,
J Fluoresc. 2015 May;25(3):641-6. doi: 10.1007/s10895-015-1548-7. Epub 2015 Mar 6.
Potassium iodide doped with cerium ions were prepared by Bridgemann Stockbarger technique and investigated by optical absorption, Photoluminescence(PL), Thermoluminescence(TL), Photostimulated Luminescence(PSL) and TL emission. The optical absorption measurement indicates that F and V centers are formed in the crystals during the γ-ray irradiation process. Optical absorption and Photoluminescence studies confirm the presence of cerium ions in the trivalent state. Spectral distribution under the Thermoluminescence Emission(TLE) and Optically Stimulated Luminescence(OSL) support the idea that the defect annihilation process to be due to thermal release of F-electron in KI:Ce(3+) crystals. Both Ce(3+) and Ce(2+) emissions were observed in the Thermoluminescence emission of the crystals. Thermoluminescence(TL) has been identified to be due to thermal release of electron produced during colouration process.
采用布里奇曼-斯托克巴杰技术制备了掺杂铈离子的碘化钾,并通过光吸收、光致发光(PL)、热释光(TL)、光激励发光(PSL)和热释光发射进行了研究。光吸收测量表明,在γ射线辐照过程中晶体中形成了F和V中心。光吸收和光致发光研究证实了三价铈离子的存在。热释光发射(TLE)和光激发发光(OSL)下的光谱分布支持了KI:Ce(3+)晶体中缺陷湮灭过程是由于F电子热释放的观点。在晶体的热释光发射中观察到了Ce(3+)和Ce(2+)发射。热释光(TL)已被确定是由于在着色过程中产生的电子热释放所致。