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首页> 外文期刊>Radiation Protection Dosimetry >ASSESSING THE CONTRIBUTION OF CROSS-SECTIONS TO THE UNCERTAINTY OF MONTE CARLO CALCULATIONS IN MICRO-AND NANODOSIMETRY
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ASSESSING THE CONTRIBUTION OF CROSS-SECTIONS TO THE UNCERTAINTY OF MONTE CARLO CALCULATIONS IN MICRO-AND NANODOSIMETRY

机译:评估横截面对微量和纳米剂量法中蒙特卡洛计算不确定性的贡献

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摘要

Within EURADOS Working Group 6 'Computational Dosimetry', the micro and nanodosimetry task group 6.2 has recently conducted a Monte Carlo (MC) exercise open to participants around the world. The aim of this exercise is to quantify the contribution to the uncertainty of micro and nanodosimetric simulation results arising from the use of different electron-impact cross-sections, and hence physical models, employed by different MC codes (GEANT4-DNA, PENELOPE, MCNP6, FLUKA, NASIC and PHITS). Comparison of the participants' simulation results for both micro and nanodosimetric quantities using different MC codes was the first step of the exercise. The deviation between results is due to different cross-sections but also different tracking methods and particle transport cut-off energies. The second step of the exercise will involve using identical cross-section datasets to account only for the other variations in the first step, thus enabling the determination of the uncertainty contribution due to different cross-sections. This paper presents a comparison of the MC simulation results obtained in the first part of the exercise. For the microdosimetric simulations, particularly in the configuration where the electron source is contained within the micrometric target, the choice of MC code has a small influence on the results. For the nanodosimetric results, on the other hand, the mean ionisation cluster size distribution (ICSD) was sensitive to the physical models used in the MC codes. The ICSD was therefore chosen to study the influence of different cross-section data on the uncertainty of simulation results.
机译:在EURADOS第6工作组“计算剂量”中,微米和纳米剂量任务组6.2最近进行了一次蒙特卡洛(MC)演习,向全世界参与者开放。本练习的目的是量化由于使用不同的电子撞击横截面以及因此由不同的MC代码(GEANT4-DNA,PENELOPE,MCNP6 ,FLUKA,NASIC和PHITS)。练习的第一步是比较参与者使用不同的MC代码进行的微量和纳米剂量的模拟结果。结果之间的偏差是由于不同的横截面而引起的,也归因于不同的跟踪方法和粒子传输的截止能量。练习的第二步将涉及使用相同的横截面数据集来仅考虑第一步中的其他变化,从而能够确定由于不同的横截面而导致的不确定性贡献。本文对练习第一部分中获得的MC仿真结果进行了比较。对于微剂量模拟,特别是在电子源包含在微靶内的配置中,MC代码的选择对结果影响很小。另一方面,对于纳米剂量结果,平均电离簇尺寸分布(ICSD)对MC代码中使用的物理模型很敏感。因此,选择ICSD来研究不同横截面数据对模拟结果不确定性的影响。

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