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The influence of Geant4-DNA toolkit parameters on electron microdosimetric track structure

机译:Geant4-DNA工具箱参数对电子微剂量轨道结构的影响

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摘要

The influence of different physical process factors on tracks of low-energy electrons in liquid water was analyzed and evaluated based on the Geant4-DNA toolkit of Geant4 version 10.4, and it provides theoretical support for obtaining the basic parameters of microdosimetry concerned with radiotherapy and radiation protection. According to the characteristics of different models, five physics constructors of Geant4-DNA toolkit were selected to simulate monoenergetic electrons in microscopic scale. Details of track structure of different Geant4-DNA physics constructors were compared, including total number of interaction processes, number and energy percentage of excitation and ionization; analyzing the impacts of mean lineal energy of several factors, including Geant4-DNA physics constructors, initial energy, radius of scoring spheres, interaction processes and cut-off energy. Firstly, ‘G4EmDNAPhysics’ (hereinafter referred to as ‘dna’) is well consistent with ‘G4EmDNAPhysics_option 2’ (hereinafter referred to as ‘option 2’), and ‘G4EmDNAPhysics_option 4’ (hereinafter referred to as ‘option 4’) is well consistent with ‘G4EmDNAPhysics_option 5’ (hereinafter referred to as ‘option 5’); secondly, there are differences for the information of track structure and mean lineal energy between ‘option 2’ ‘option 4’ and ‘G4EmDNAPhysics_option 6’ (hereinafter referred to as ‘option 6’); thirdly, the influence of the model on the mean lineal energy decreases with the increase of the radius of the scoring spheres, whereas mean lineal energy increases as the tracking cut increases. Several alternative discrete physics constructors of Geant4-DNA are comprehensively discussed overlaying multiple perspectives under different conditions in this work.
机译:基于Geant4 10.4版的Geant4-DNA工具包,分析和评估了不同物理过程因素对液态水中低能电子径迹的影响,为获得与放射疗法和放射线有关的微剂量学的基本参数提供了理论支持。保护。根据不同模型的特点,选择了五个Geant4-DNA工具箱的物理构造函数来模拟微观尺度的单能电子。比较了不同Geant4-DNA物理构造函数的轨道结构,包括相互作用过程的总数,激发和电离的数量和能量百分比;分析了几种因素的平均线性能量的影响,这些因素包括Geant4-DNA物理构造函数,初始能量,得分球的半径,相互作用过程和截止能量。首先,“ G4EmDNAPhysics”(以下称为“ dna”)与“ G4EmDNAPhysics_option 2”(以下称为“选项2”)非常一致,而“ G4EmDNAPhysics_option 4”(以下称为“选项4”)很好。与“ G4EmDNAPhysics_option 5”(以下称为“ option 5”)一致;其次,“选项2”,“选项4”和“ G4EmDNAPhysics_option 6”(以下称为“选项6”)之间的轨道结构和平均线能量信息不同;第三,模型对平均线性能量的影响随着得分球半径的增加而减小,而平均线性能量则随着跟踪切割的增加而增加。本文对Geant4-DNA的几种不同的离散物理构造函数进行了全面讨论,并覆盖了不同条件下的多种观点。

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