Madkhli A Y, Jabali D A, Souadi G, Sonsuz M, Kaynar U H, Akça-Özalp S, Ayvacikli M, Madkhali O, Topaksu M, Can N
Jazan University, College of Science, Department of Physical Sciences, Physics Division, P.O. Box 114, 45142, Jazan, Kingdom of Saudi Arabia.
Physics Department, Cukurova University, Arts-Sciences Faculty, 01330, Adana, Turkiye.
Appl Radiat Isot. 2024 Jun;208:111301. doi: 10.1016/j.apradiso.2024.111301. Epub 2024 Mar 20.
This study examines the thermoluminescent (TL) properties of undoped CaYO(BO) phosphor, focusing on how it behaves under a variety of experimental conditions. The IRSL-TL 565 nm was chosen as the appropriate detection filter among various optical detection filter combinations. During the preheating trials conducted at a rate of 2 °C/s, the TL peak exhibited increased intensity, particularly around 200 °C. The experimental outcomes demonstrated a reliable linear relationship (R = 0.996 and b = 1.015) in the dose response of undoped preheated CaYO(BO) within the range of 1-200 Gy. The investigation encompasses a range of techniques, including the T-T method, computerized glow curve deconvolution (CGCD) analysis, and theoretical modelling. The application of the T-T method to samples irradiated with a 5 Gy dose revealed distinct zones on the T versus T diagram, signifying the presence of at least two discernible components within the TL glow curve, specifically, a single general order kinetics peak and a continuous distribution. The analysis of activation energy versus preheated temperature exhibited a stepwise curve, indicating five trap levels with depths ranging between 1.13 eV and 1.40 eV. The CGCD method also revealed the superposition of at least five distinct TL glow peaks. It was observed that their activation energies were consistent with the T-T experiment. Furthermore, the low Figure of Merit (FOM) value of 1.18% indicates high reliability in the goodness-of-fit measure. These findings affirm the reliability and effectiveness of the employed methods in characterizing the TL properties of the CaYO(BO) phosphor under investigation. Theoretical models, including the semi-localized transition model, were introduced to explain anomalous observations in TL glow peak intensities and heating rate patterns. While providing a conceptual framework, these models may require adjustments to accurately capture the specific characteristics uncovered through CGCD analysis. As a potential application, the study suggests that the characterized TL properties of CaYO(BO) phosphor could be utilized in dosimetric applications, such as radiation dose measurements, owing to its reliable linear response within a broad dose range.
本研究考察了未掺杂的CaYO(BO)荧光粉的热释光(TL)特性,重点关注其在各种实验条件下的行为表现。在各种光学检测滤光片组合中,选择IRSL-TL 565 nm作为合适的检测滤光片。在以2℃/s的速率进行预热试验期间,TL峰的强度增加,特别是在200℃左右。实验结果表明,在1-200 Gy范围内,未掺杂预热CaYO(BO)的剂量响应具有可靠的线性关系(R = 0.996,b = 1.015)。该研究涵盖了一系列技术,包括T-T方法、计算机化热释光曲线反褶积(CGCD)分析和理论建模。将T-T方法应用于5 Gy剂量辐照的样品,在T对T图上显示出不同的区域,这表明TL发光曲线中至少存在两个可分辨的成分,具体来说,是一个单一的一般阶动力学峰和一个连续分布。活化能与预热温度的分析呈现出一条阶梯状曲线,表明存在五个陷阱能级,其深度在1.13 eV至1.40 eV之间。CGCD方法还揭示了至少五个不同的TL发光峰的叠加。观察到它们的活化能与T-T实验一致。此外,1.18%的低品质因数(FOM)值表明在拟合优度测量方面具有高可靠性。这些发现证实了所采用的方法在表征所研究的CaYO(BO)荧光粉的TL特性方面的可靠性和有效性。引入了包括半局域化跃迁模型在内的理论模型来解释TL发光峰强度和加热速率模式中的异常观测结果。虽然提供了一个概念框架,但这些模型可能需要调整以准确捕捉通过CGCD分析发现的具体特征。作为一种潜在应用,该研究表明,由于CaYO(BO)荧光粉在宽剂量范围内具有可靠的线性响应,其表征的TL特性可用于剂量学应用,如辐射剂量测量。