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经中子和伽马辐照的钆掺杂石英玻璃的剂量学特性。

Dosimetric characteristics of Gd-doped silica glass subjected to neutron and gamma irradiations.

作者信息

Ismail S S, Sani S F Abdul, Khandaker M U, Tamchek N, Karim Julia A, Almugren K S, Alkallas F H, Shafiqah A S Siti, Bradley D A

机构信息

Centre for Applied Physics and Radiation Technologies, School of Medical and Life Science, 47500, Bandar Sunway, Selangor, Malaysia.

Department of Physics, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia.

出版信息

Appl Radiat Isot. 2022 Nov;189:110409. doi: 10.1016/j.apradiso.2022.110409. Epub 2022 Aug 11.

Abstract

The dosimetric characteristics of newly developed gadolinium (Gd) glass dosimeter produced via sol-gel method are reported. Irradiation were made using a 750 kW neutron flux thermal power and 1.25 MeV Co gamma rays with entrance doses from 2 to 10 Gy. Investigation has been done on various Gd dopant concentrations, ranging from 1 to 10 mol%. The Gd-doped silica glass have been characterised for thermoluminescence (TL) dose response, sensitivity, linearity index, glow curve and kinetic parameter analysis. For particular dopant concentration obtained in 6 mol% Gd, the least squares fit shows the change in TL yield, correlation coefficient (r) of better than 0.980 (at 95% confidence level), with neutron and gamma exposure to be 8 and 4 times greater than that of 1 mol% Gd, respectively. Broad peaks in the absence of any sharp peak observed in the glow curve confirms the amorphous nature of the prepared glass. A glow curve of Gd-doped SiO sample is observed with a single prominent peak (T) within 200-250 °C (peak shifting appears with respect to the increment of dopant concentration) and 350 °C (for all respective Gd dopants) for neutron and gamma irradiations, respectively. Deconvolution shows the glow curves of the Gd-doped SiO glass to be formed of seven and five overlapping peaks, with figures of merit below 2% (FOM) of between 1.38-1.79 and 1.30-1.97 for the particular neutron and gamma irradiations, respectively. Through use of Glowfit deconvolution software, the key trapping parameters of activation energy, E and frequency factor, s were calculated for the Gd-doped SiO glass. The mechanism of TL yield with the gradual increase in Gd concentrations and doses is explained upon the incorporation of Gd and radiation damage that change the structure of the electron traps in the glass matrix. These early results indicate that selectively screened Gd-SiO glass can be developed into a promising TL system towards dosimetric applications.

摘要

报告了通过溶胶 - 凝胶法制备的新型钆(Gd)玻璃剂量计的剂量学特性。使用750千瓦中子通量热功率和1.25兆电子伏特钴γ射线进行辐照,入射剂量为2至10戈瑞。对1至10摩尔%范围内的各种钆掺杂浓度进行了研究。对掺钆石英玻璃进行了热释光(TL)剂量响应、灵敏度、线性指数、发光曲线和动力学参数分析。对于6摩尔%钆的特定掺杂浓度,最小二乘法拟合显示TL产额的变化,相关系数(r)优于0.980(在95%置信水平下),中子和γ辐照下的TL产额分别比1摩尔%钆的情况大8倍和4倍。发光曲线中未观察到任何尖锐峰,只有宽峰,这证实了所制备玻璃的非晶性质。掺钆SiO样品的发光曲线在200 - 250°C范围内观察到一个突出峰(T)(峰位随掺杂浓度增加而移动),中子和γ辐照下分别在350°C出现(针对所有相应的钆掺杂剂)。去卷积显示掺钆SiO玻璃的发光曲线由七个和五个重叠峰组成,特定中子和γ辐照下的品质因数(FOM)分别在1.38 - 1.79和1.30 - 1.97之间,低于2%。通过使用Glowfit去卷积软件,计算了掺钆SiO玻璃的关键俘获参数,即激活能E和频率因子s。随着钆浓度和剂量逐渐增加,TL产额的机制是基于钆的掺入和辐射损伤改变了玻璃基质中电子陷阱的结构来解释的。这些早期结果表明,经过选择性筛选的Gd - SiO玻璃有望发展成为一种用于剂量学应用的有前景的TL系统。

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