The effects of ionisation density on the structure of the glow curve of LiF:Mg,Ti (TLD-100) are briefly reviewed and discussed within the framework of the spatially correlated TC/LC model and localised recombination. The effects of 'slow-cooling' on the structure of composite peak 5 following low-ionisation density beta/gamma irradiation are described and analysed in both 'slow-cooled' and 'normally cooled' samples. It is demonstrated that 'slow-cooling' using a cooling rate of 30 degrees C h(-1) increases the relative intensity of glow peak 5a to composite glow peak 5 from approximately 0.1 to approximately 2, thereby greatly improving the precision of measurement of the ratio 5a/5. The improved precision removes a hurdle impeding the development of the ionisation density discrimination properties of the peak 5a/5 nanodosimeter.

译文

在空间相关的TC/LC模型和局部重组的框架内,简要回顾和讨论了电离密度对LiF:Mg,Ti (TLD-100) 辉光曲线结构的影响。在 “慢冷” 和 “正常冷却” 样品中描述并分析了低电离密度 β/γ 辐照后 “慢冷” 对复合峰5结构的影响。证明了使用30 °c h(-1) 的冷却速率的 “缓慢冷却” 将辉光峰5a与复合辉光峰5的相对强度从大约0.1增加到大约2,从而大大提高了比率5a/5的测量精度。提高的精度消除了阻碍峰5a/5纳米剂量计电离密度判别特性发展的障碍。

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