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On the accuracy of Monte Carlo based beam dynamics models for the degrader in proton therapy facilities

机译:基于蒙特卡洛的质子治疗设施降解器束动力学模型的准确性

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In a cyclotron-based proton therapy facility, the energy changes are performed by means of a degrader of variable thickness. The interaction of the proton beam with the degrader creates energy tails and increases the beam emittance. An accurate model of the degraded beam properties is important not only to better understand the performance of a facility already in operation, but also to support the development of new proton therapy concepts. The precision of the degraded beam properties, in terms of energy spectrum and transverse phase space, is influenced by approximations in the model of the particle-matter interaction. In this work the model of a graphite degrader has been developed with four Monte Carlo codes: three conventional Monte Carlo codes (FLUKA, GEANT4 and MCNPX) and the multi-purpose particle tracking code OPAL equipped with a simplified Monte Carlo routine. From the comparison between the different codes, we can deduce how the accuracy of the degrader model influences the precision of the beam dynamics model of a possible transport line downstream of the degrader.
机译:在基于回旋加速器的质子治疗设备中,通过可变厚度的降级器执行能量更改。质子束与降解剂的相互作用产生能量尾部并增加束的发射率。准确的光束质量退化模型不仅对于更好地了解已经投入运行的设备的性能非常重要,而且对于支持新的质子治疗概念的发展也很重要。在能谱和横向相空间方面,退化的射束特性的精度受到质点相互作用模型中近似值的影响。在这项工作中,已经用四个蒙特卡洛代码开发了石墨降解器模型:三个常规的蒙特卡洛代码(FLUKA,GEANT4和MCNPX)以及配备了简化蒙特卡洛例程的多功能粒子跟踪代码OPAL。通过不同代码之间的比较,我们可以推断出降级器模型的精度如何影响降级器下游可能的传输线的射束动力学模型的精度。

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