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Temperature and temporal dependence of the optical response for a radiochromic dosimeter

机译:辐射变色剂量计的光学响应的​​温度和时间依赖性

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Purpose: Both temporal and thermal dependencies of the dose response have been observed in radiochromic dosimeters. As these dependencies may be influenced by the dose level, the present study investigates the temperature dependence during irradiation and the temporal change of the optical response following irradiation of radiochromic dosimeters at a range of doses. Methods: Cuvette samples of the PRESAGE? radiochromic dosimeter were irradiated within a dose range of 0-10 Gy at irradiation temperatures within 5-35 °C and postirradiation storage within 6-30 °C. The optical response due to irradiation was measured using a standard spectrophotometer and the data were analyzed in terms of thermal and temporal change. Results: The initial dose response was linear over the applied dose range independent of irradiation temperature. However, the optical response to a specific dose increased exponentially with irradiation temperature corresponding to an activation energy of 0.114 ± 0.007 eV. The temporal change in dose response after irradiation consisted of an offset, an auto-oxidation rate with activation energy 0.84 ± 0.03 eV, and an initial exponential increase in optical response (1.6 ± 0.2 eV) followed by an exponential decrease in optical response (0.98 ± 0.08 eV). These contributions depended on both storage temperature and the dose given, leading to a nonlinear dose response with time at low storage temperatures and a high auto-oxidation rate at high storage temperatures. Conclusions: Thermal equilibration is important to the radiochromic dosimeter investigated due to an exponential change in dose response with irradiation temperature and a considerable postirradiation temporal change in response. For the dosimeter version investigated in this study, a compromise in storage temperature has to be made between increasing the nonlinearity of the dose response with time and inducing a high auto-oxidation rate.
机译:目的:在放射致变剂量计中已观察到剂量响应的时间和温度依赖性。由于这些依赖性可能会受到剂量水平的影响,因此本研究调查了辐照期间的温度依赖性以及在一定剂量范围内辐照放射性变色剂量计后光学响应的​​时间变化。方法:比色杯样品的PRESAGE?辐射致变色剂量计在5-35°C的辐照温度下在0-10 Gy的剂量范围内辐照,辐照后的储存在6-30°C内。使用标准分光光度计测量由于辐照引起的光学响应,并根据热和时间变化分析数据。结果:初始剂量响应在所施加的剂量范围内是线性的,与辐射温度无关。但是,对特定剂量的光学响应随辐照温度呈指数增加,对应的活化能为0.114±0.007 eV。辐照后剂量反应的时间变化包括偏移,活化能为0.84±0.03 eV的自氧化率,光学反应的初始指数增加(1.6±0.2 eV),随后光学反应的指数下降(0.98) ±0.08 eV)。这些贡献取决于储存温度和给定的剂量,导致在低储存温度下随时间的非线性剂量响应以及在高储存温度下高的自氧化速率。结论:热平衡对所研究的放射色剂量计很重要,因为剂量响应随辐照温度呈指数变化,并且辐照后响应随时间发生显着变化。对于本研究中研究的剂量计版本,必须在增加剂量响应随时间的非线性与诱导高自氧化率之间做出折衷的存储温度。

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