合成托帕斯/冠石复合材料的增强热发光特性
A Sala Crist1, E Trujillo-Vázquez2, M I Pech-Canul2
1CIFICEN (UNCPBA - CICPBA - CONICET), Pinto 399, 7000, Tandil, Buenos Aires, Argentina; Universidad Nacional del Centro de la Provincia de Buenos Aires, Facultad de Ciencia Exactas, Instituto de Física Arroyo Seco (IFAS), Pinto 399, 7000, Tandil, Buenos Aires, Argentina.
概括
合成托帕斯复合材料在预辐射后显示了改善的热发光 (TL) 剂量表现. 高剂量显著提高了主要的发光峰值效率,这表明辐射检测有希望的应用.
科学领域:
- 材料科学 材料科学 材料科学
- 辐射物理 辐射物理
- 剂量测量方法 剂量测量方法
背景情况:
- 合成托帕斯复合材料,特别是通过化学蒸汽沉积 (CVD) 合成的Al2O3,显示了热发光 (TL) 剂量计的潜力.
- 预辐射已被确定为一种增强这些材料剂量学性能的方法.
研究的目的:
- 为了研究前照射后的托帕斯/冠石样本的剂量学特性.
- 分析这些合成复合材料在暴露于β辐射时观察到的敏感化现象.
主要方法:
- 发光曲线分析,观察热发光 (TL) 信号的变化.
- 线性和可重复性研究,以评估信号稳定性.
- T_m-T_stop分析以确定TL发光峰的数量.
- 发光曲线解卷以研究捕获状态.
主要成果:
- 在暴露于β辐射后,在托帕斯/冠石样本中观察到显著的敏感化.
- 在高剂量照射 (280 Gy) 后,主要发光峰的效率增加了四倍以上.
- 评估了发光曲线信号的线性和可重复性,以了解敏感化效应.
结论:
- 预照射,特别是高剂量照射,可以提高合成托帕斯/冠石复合材料的热发光 (TL) 效率.
- 敏感化现象为改善辐射检测能力提供了潜力.
- 需要对捕获状态进行进一步的研究,以充分阐明敏感化机制.
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