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Establishment of ANSI N13.11 X-ray radiation fields for personal dosimetry performance test by computation and experiment.

机译:通过计算和实验建立用于个人剂量学性能测试的ANSI N13.11 X射线辐射场。

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摘要

This paper describes establishment by computational and experimental methods of the American National Standard Institute (ANSI) N13.11 X-ray radiation fields by the Korea Atomic Energy Research Institute (KAERI). These fields were used in the standard irradiations of various personal dosimeters for the personal dosimetry performance test program performed by the Ministry of Science and Technology of Korea in the autumn of 1995. Theoretical X-ray spectra produced from two KAERI X-ray generators were estimated using a modified Kramers' theory with target attenuation and backscatter correction and their spectral distributions experimentally measured by a high-purity germanium semiconductor detector through proper corrections for measured pulse height distributions with photopeak efficiency, Compton fraction, and K-escape fraction. The average energies and conversion coefficients obtained from the computation and experimental methods, when compared with ANSI N13.11 and the recently published National Institute of Standards and Technology X-ray beams, appeared to be in good agreement--(+/-)3% between corresponding values--and thus, could be satisfactorily applied in the performance test of personal dosimeters.
机译:本文介绍了通过计算和实验方法建立的韩国原子能研究院(KAERI)所建立的美国国家标准研究院(ANSI)N13.11 X射线辐射场的方法。这些场用于韩国科学技术部于1995年秋季执行的个人剂量测定性能测试程序的各种个人剂量计的标准照射。估计了由两个KAERI X射线发生器产生的理论X射线光谱使用具有目标衰减和反向散射校正功能的改进的Kramers理论,以及高纯度锗半导体探测器通过对光峰值效率,康普顿分数和K逸出分数的脉冲高度分布进行适当的校正,通过实验对它们的光谱分布进行测量。通过计算和实验方法获得的平均能量和转换系数,与ANSI N13.11和最近发布的美国国家标准技术研究院的X射线束相比,具有很好的一致性-(+/-)3值之间的百分比-因此可以令人满意地应用于个人剂量计的性能测试。

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