热释光氟化锂测定百万伏特辐射剂量的准确性。

B I Rudén, L G Bengtsson
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引用次数: 17

摘要

本文报道了不同种类的LiF剂量计在60Co伽马辐射下,6和42 MV的x射线束和2.2和34.5 MeV的电子在聚苯乙烯中每Gy的相对光输出。吸收剂量的分布在0.25和0.4毫米厚LiF-teflon盘包围聚苯乙烯和60辐照有限公司42 MV x射线辐射和39兆电子伏电子测量使用0.01和0.02毫米厚LiF-teflon光盘。测量结果表明,剂量计中的吸收剂量分布取决于辐射的能量。当使用平面剂量计时,在读出过程中可能的两个方向上测量的信号之间的差异很容易达到几个百分点,因此,当需要最高精度时,不相信0.4 mm和0.5 mm的liff - teflon圆盘。伯林的空腔理论没有解释由于剂量计和幻体材料的电子散射特性不同而引起的现象。对于处理这些现象的平面剂量计,提出了不同的空腔理论。它描述的结果与伯林理论的近似程度大致相同,但未能解释所观察到的电子的能量依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accuracy of megavolt radiation dosimetry using thermoluminescent lithium fluoride.

The relative light output per Gy in polystyrene for roentgen beams of 6 and 42 MV and electrons between 2.2 and 34.5 MeV relative to 60Co gamma radiation is reported for different kinds of LiF dosemeters. The distribution of the absorbed dose inside a 0.25 and 0.4 mm thick LiF-teflon disc surrounded by polystyrene and irradiated with 60Co, 42 MV roentgen radiation and 39 MeV electrons was measured using 0.01 and 0.02 mm thick Lif-teflon discs. The measurements show that the absorbed dose distribution in the dosemeter depends on the energy of the radiation. When flat dosemeters were used, differences between the signals measured at the two orientations possible during read-out could easily amount to several per cent, and for this reason 0.4 mm and 0.5 mm LiF-Teflon discs were not trusted when the highest accuracy was required. The cavity theory by Burlin does not account for the phenomena caused by differences in electron scattering properties of the dosemeter and the phantom material. Some suggestions are presented for a different cavity theory for flat dosemeters dealing also with these phenomena. It describes the results to about the same degree of approximation as the Burlin theory, and fails to explain the observed energy dependence for electrons.

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