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首页> 外文期刊>Journal of the Korean Physical Society >Parametric study of a variable-magnetic-field-based energy-selection system for generating a spread-out Bragg peak with a laser-accelerated proton beam
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Parametric study of a variable-magnetic-field-based energy-selection system for generating a spread-out Bragg peak with a laser-accelerated proton beam

机译:基于可变磁场的能量选择系统的参数研究,该系统利用激光加速质子束产生展开的布拉格峰

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摘要

Laser-based proton beam acceleration, which produces broad energy spectra, is unsuitable for direct clinical use. Thus, employing an energy selection system is necessary. The purpose of the present study was to investigate a method whereby a variable magnetic field could be employed with an energy selection system to generate a spread-out Bragg peak (SOBP). For energy selection, particle transport and dosimetric property measurements, the Geant4 toolkit was implemented. The energy spectrum of the laser-accelerated proton beam was acquired using a particle-in-cell simulation. The hole size and the position of the energy selection collimator were varied in order to determine the effects of those parameters on the dosimetric properties. To generate an SOBP, we changed the magnetic field in the energy selection system for each beam weighting factor during beam irradiation. The overall results of this study suggest that the use of an energy selection system with a variable magnetic field can effectively generate an SOBP suitable for proton radiation therapy applications.
机译:基于激光的质子束加速会产生较宽的能谱,因此不适合直接用于临床。因此,采用能量选择系统是必要的。本研究的目的是研究一种方法,在该方法中可以将可变磁场与能量选择系统结合使用以产生展开式布拉格峰(SOBP)。为了进行能量选择,粒子传输和剂量特性测量,实施了Geant4工具包。激光加速质子束的能谱是使用单元格内粒子模拟获得的。改变孔的尺寸和能量选择准直仪的位置,以确定这些参数对剂量特性的影响。为了产生SOBP,我们在束辐照期间针对每个束加权因子更改了能量选择系统中的磁场。这项研究的总体结果表明,使用具有可变磁场的能量选择系统可以有效地产生适用于质子放射治疗应用的SOBP。

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