吸收剂量标准物质:扩大动态范围,提高测量精度

V. P. Tenishev
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引用次数: 0

摘要

参考物质测量吸收电离辐射剂量在0.01 ~ 200kgy范围内的计量特性的建立和控制是一项紧迫的任务,因为它在各个工业中应用广泛。在辐射技术中,将一个单位的强光子、电子和β辐射的吸收剂量率传递给测量仪器的最方便的计量支持手段是具有国际单位制(SI)计量可追溯性的标准物质。本文研究了一种扩大放射致色膜剂量测定系统测量高强度电离辐射吸收剂量动态范围的方法,并进行了试验。剂量测量的精度(不确定度)是根据放射性致色成分的辐射敏感层的初始光密度来估计的。扩大剂量特性和改进现有(水中)吸收剂量参考物质作为电离辐射吸收剂量二级标准(措施)的计量特性的可能性,在扩大的动态范围内,以提高(水中)吸收剂量测量值的精度(不确定度),再现和(或)储存吸收剂量选定测量尺度的一个或多个点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reference Materials of Absorbed Dose: Expanding Dynamic Range and Improving Measurement Accuracy
Establishment and control of metrological characteristics of measurements of absorbed ionizing radiation doses in the range of 0.01 and 200 kGy by reference materials is an urgent task due to their wide application in various industries. The most convenient means of metrological support for transferring a unit of absorbed dose rate of intense photon, electron, and beta radiation to measuring instruments in radiation technologies are reference materials with established metrological traceability to the International System of Units (SI). In the present study, a method for expanding the dynamic range of measuring the absorbed dose of high-intensity ionizing radiation by radiochromic film dosimetry systems was considered and tested. The accuracy (uncertainty) of dose measurements was estimated depending on the initial optical density of the radiation-sensitive layer of the radiochromic composition. The possibility of expanding the dose characteristics and improving the metrological characteristics of the existing reference materials of absorbed dose (in water) for use as secondary standards (Measures) of the absorbed dose of ionizing radiation reproducing and (or) storing one or more points of the selected measurement scale of the absorbed dose with increased accuracy (uncertainty) of the measured values of the absorbed dose (in water) in an extended dynamic range was shown.
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