首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >Luminescence-based retrospective dosimetry using Al2O3 from mobile phones: a simulation approach to determine the effects of position
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Luminescence-based retrospective dosimetry using Al2O3 from mobile phones: a simulation approach to determine the effects of position

机译:使用手机中的Al2O3进行基于发光的追溯剂量学:一种确定位置影响的模拟方法

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摘要

Monte Carlo modelling has been performed in support of efforts to establish emergency dosimetry services based on optically or thermally stimulated luminescence (OSL/TL) of the Al2O3 substrate present on the resistors found in mobile phones, which can act as fortuitous retrospective dosemeters for photon exposures. Specifically, a range of exposure conditions has been modelled to assess the dependence of the dosimetry on factors such as the position of resistors within a phone, the orientation of the phone relative to the source, and the location of the phone relative to its owner. Variations due to the resistors' positions and the phone's orientation were generally found to contribute just a few percent to the uncertainty on the dose assessments, though the electrical contacts surrounding the resistors could potentially enhance these by several 10s of percent. But, the location of the phone was found to impact dosimetry greatly. The largest discrepancies in the results were found for low-energy exposures: for Ir-192, differences of up to an order-of-magnitude were found between resistor and whole body doses. The outcome of the work was to derive correction / calibration factors that can be applied to estimate whole body doses from OSL/TL readings, the accurate application of which would depend on the knowledge of the exposure geometry and the degree of conservatism acceptable for the dose assessment.
机译:进行了蒙特卡洛建模,以支持基于手机中电阻器上存在的Al2O3衬底的光学或热激发发光(OSL / TL)建立紧急剂量服务的工作,该设备可以用作光子暴露的偶然回顾剂量计。具体而言,已对一系列曝光条件进行了建模,以评估剂量测定法对诸如电话内电阻器的位置,电话相对于信号源的方向以及电话相对于其所有者的位置等因素的依赖性。通常发现,由于电阻器位置和电话方向而引起的变化对剂量评估的不确定性仅造成百分之几的影响,尽管电阻器周围的电触点可能会将这些误差提高百分之几。但是,发现手机的位置对剂量测定有很大影响。结果发现最大的差异是低能量暴露:对于Ir-192,电阻和全身剂量之间的差异最大到一个数量级。工作的结果是得出校正/校准因子,该校正因子可用于根据OSL / TL读数估算全身剂量,其准确应用将取决于对暴露几何学的了解以及该剂量可接受的保守程度评定。

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