Wei Kun, Hei Dongwei, Xu Qing, Liu Jun, Guo Quan, Weng Xiufeng, Tan Xinjian, Sheng Liang
Department of Engineering Physics, Tsinghua University 100084 Beijing China
Northwest Institute of Nuclear Technology 710024 Xi'an China
RSC Adv. 2021 May 10;11(28):17020-17024. doi: 10.1039/d1ra00347j. eCollection 2021 May 6.
Lutetium-yttrium oxyorthosilicate doped with cerium (LYSO:Ce) is a widely used scintillator, and the study of its nonlinear behavior under high excitation density is very significant owing to its direct influence on radiation measurements. Using a 266 nm ultraviolet laser to excite an LYSO:Ce crystal, the relationship between the photoluminescence (PL) light yield and excitation density was studied by scan experiments. The excitation threshold of the LYSO:Ce was obtained, which is about 2.3 J cm. Picosecond transient absorption of LYSO:Ce at 800 nm was obtained and used to analyze the dynamic process of carriers. The physical mechanism behind the nonlinearity was discussed and analyzed using the Förster dipole-dipole interaction model, and the interaction characteristic radius was obtained by fitting. This work can help us understand the nonlinearity phenomenon in scintillators and provide references for related radiation detection applications.
掺铈的硅酸钇镥(LYSO:Ce)是一种广泛使用的闪烁体,由于其对辐射测量有直接影响,研究其在高激发密度下的非线性行为具有重要意义。利用266nm紫外激光激发LYSO:Ce晶体,通过扫描实验研究了光致发光(PL)光产额与激发密度之间的关系。得到了LYSO:Ce的激发阈值,约为2.3J/cm²。获得了LYSO:Ce在800nm处的皮秒瞬态吸收,并用于分析载流子的动态过程。利用福斯特偶极-偶极相互作用模型对非线性背后的物理机制进行了讨论和分析,并通过拟合得到了相互作用特征半径。这项工作有助于我们理解闪烁体中的非线性现象,并为相关辐射检测应用提供参考。