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A computationally effcient moment-preserving Monte Carlo proton transport method in Geant4

机译:GEANT4中的计算效率矩保存蒙特卡罗质子传输方法

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摘要

The moment-preserving method, demonstrated as a viable alternative to condensed history for electrons, is extended to protons. Given the generality and the flexibility of the method, a discrete Coulomb scattering and discrete impactionization differential cross-section library for protons was readily developed and existing Geant4 electron discrete process and model classes were extended to make use of the new proton library. It is shown that levels of effciency and accuracy similar to those demonstrated for electrons are obtainable for protons in straight-ahead, energy-loss problems. However, in problems with deflection, agreement is strongly dependent on the proton energy. That is, good agreement was observed in the few MeV range, while unsatisfactory agreement was observed in problems with proton energies above 100-MeV.
机译:作为用于电子的凝结历史的可行替代品证明的时刻保存方法延伸到质子。鉴于该方法的一般性和灵活性,用于质子的离散库仑散射和离散碰撞差异截面文库易于开发,并且延长了现有的GEANT4电子流程和模型类以利用新的质子库。结果表明,与电子所示的效率和精度类似的效率和精度可以用于直接前方的质子,能量损失问题。然而,在偏转问题中,协议强烈依赖质子能量。也就是说,在几个MEV范围内观察到良好的一致性,而在100-MeV以上的质子能量问题中观察到不满意的协议。

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