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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Track-structure simulations for charged particles
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Track-structure simulations for charged particles

机译:轨道结构模拟带电粒子

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Monte Carlo track-structure simulations provide a detailed and accurate picture of radiation transport of charged particles through condensed matter of biological interest. Liquid water serves as a surrogate for soft tissue and is used in most Monte Carlo track-structure codes. Basic theories of radiation transport and track-structure simulations are discussed and differences compared to condensed history codes highlighted. Interaction cross sections for electrons, protons, alpha particles, and light and heavy ions are required input data for track-structure simulations. Different calculation methods, including the plane-wave Born approximation, the dielectric theory, and semi-empirical approaches are presented using liquid water as a target. Low-energy electron transport and light ion transport are discussed as areas of special interest.
机译:蒙特卡罗模拟轨道结构提供一个详细和准确的辐射运输通过浓缩的带电粒子生物感兴趣的问题。作为代理为软组织和使用在大多数蒙特卡罗轨道结构代码。辐射传输理论和轨道结构模拟和讨论凝聚历史代码相比差异突出显示。电子,质子,阿尔法粒子,光和重离子所需的输入数据轨道结构模拟。计算方法,包括平面波玻恩近似、电介质理论和提出了使用半经验方法液态水作为目标。传输、光离子传输进行了讨论特殊利益的领域。

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