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Al2O3:C对低能带电粒子的光激发发光剂量响应的电离密度依赖性

Ionisation density dependence of the optically stimulated luminescence dose-response of AL2O3:C to low-energy charged particles.

作者信息

Gaza Ramona, Yukihara Eduardo G, McKeever Stephen W S, Avila Olga, Buenfil Ana-Elena, Gamboa-deBuen Isabel, Rodríguez-Villafuerte Mercedes, Ruiz-Trejo César, Brandan María-Ester

机构信息

Department of Physics, Oklahoma State University, Stillwater, OK 74078-3072, USA.

出版信息

Radiat Prot Dosimetry. 2006;119(1-4):375-9. doi: 10.1093/rpd/nci545. Epub 2006 Apr 27.

Abstract

The optically stimulated luminescence (OSL) response of Al2O3:C to high doses of gamma or beta irradiation can be used to predict the response of this material to charged particles as a function of particle fluence, particle energy and/or linear energy transfer (LET). In particular, it is predicted that track interaction effects at high particle fluences should result in linear-sublinear growth of the OSL signal. Similar considerations also predict a dependence of the fluence at which sublinearity starts upon the energy of the particles. In this work the OSL response of Al2O3:C to low-energy charged particles was investigated using protons (1, 2 and 4 MeV), carbon ions (13 MeV) and oxygen ions (10 MeV). The sublinear growth predicted above was qualitatively confirmed, but the energy dependence prediction was not. Furthermore, the efficiency of OSL production in the material after charged particle irradiation, compared to that obtained for gamma irradiation, is determined from the dose-response curves by fitting to a simple saturating exponential function. The efficiency values so obtained using this method are compared with those obtained from a conventional single-point measurement in the linear portion of the curve and found to be in good agreement. In general, the efficiency decreases as the LET of the particle increases. The present data are compared with published data obtained using high-energy charged particles and the results show that the efficiency is not a unique function of LET.

摘要

Al2O3:C对高剂量伽马或贝塔辐射的光激发发光(OSL)响应可用于预测该材料对带电粒子的响应,此响应是粒子注量、粒子能量和/或线能量转移(LET)的函数。特别是,据预测,在高粒子注量下的径迹相互作用效应应导致OSL信号呈线性-亚线性增长。类似的考虑还预测,亚线性开始时的注量与粒子能量有关。在这项工作中,使用质子(1、2和4兆电子伏)、碳离子(13兆电子伏)和氧离子(10兆电子伏)研究了Al2O3:C对低能带电粒子的OSL响应。定性地证实了上述预测的亚线性增长,但能量依赖性预测未得到证实。此外,通过拟合简单的饱和指数函数从剂量响应曲线确定带电粒子辐照后材料中OSL产生的效率与伽马辐照所获得的效率相比。使用该方法如此获得的效率值与从曲线线性部分的传统单点测量获得的值进行比较,发现两者吻合良好。一般来说,效率随着粒子LET的增加而降低。将目前的数据与使用高能带电粒子获得的已发表数据进行比较,结果表明效率不是LET的唯一函数。

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