将晶体中的X射线布拉格反射物理过程添加到Geant4蒙特卡罗模拟工具包中,第一部分:晶体板的反射

Q4 Medicine Precision Radiation Oncology Pub Date : 2023-02-26 DOI:10.1002/pro6.1188
F. Guan, Makoto Asai, D. Bartkoski, Michael Kleckner, Ze’ev Harel, M. Salehpour
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引用次数: 1

摘要

固体晶体的X射线衍射显示了光子的波动性质。X射线光子与晶体相互作用是一个重要的电磁物理过程。布拉格衍射,通常被称为布拉格反射,是X射线衍射的一种特殊形式,被称为劳厄衍射。当布拉格定律满足时,入射的光子束以布拉格角的镜面反射形式从晶体平面反射出去。然而,布拉格反射物理过程还没有集成到通用的蒙特卡罗模拟工具Geant4中。在本研究中,我们开发了一个新的EM物理过程类“G4CrystalBraggReflection”和一个新的EM物理模型类“G4DarwinDynamicalModel”,用于模拟晶体内的Bragg反射物理过程。我们将Bragg反射物理过程添加到Geant4的EM物理类别中。在硅晶体板中光子跟踪的初步结果表明,在Geant4的框架中,除了模拟标准EM过程外,还可以模拟Bragg反射过程。
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Adding the X‐ray Bragg reflection physical process in crystal to the Geant4 Monte Carlo simulation toolkit, part I: reflection from a crystal slab
X‐ray diffraction from a solid crystal shows the wave nature of photons. It is an important electromagnetic (EM) physics process when X‐ray photons interact with a crystal. Bragg diffraction, often called Bragg reflection, is a special case of the general form of X‐ray diffraction, known as Laue diffraction. When the Bragg's law is met, the incident photon beam is reflected from the crystal plane behaving as a specular reflection at the Bragg angle. However, the Bragg reflection physical process has not been integrated into the general‐purpose Monte Carlo simulation toolkit Geant4 for particle physics. In the current study, we developed a new EM physical process class “G4CrystalBraggReflection” and a new EM physical model class “G4DarwinDynamicalModel” for modeling the Bragg reflection physical process within a crystal. We added the Bragg reflection physical process to the EM physics category of Geant4. The preliminary results of photon tracking in a silicon crystal slab have shown the feasibility of simulating the Bragg reflection process in addition to the standard EM processes in the framework of Geant4.
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来源期刊
Precision Radiation Oncology
Precision Radiation Oncology Medicine-Oncology
CiteScore
1.20
自引率
0.00%
发文量
32
审稿时长
13 weeks
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