首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of a reaction ejectile sampling algorithm to recover kinematic correlations from inclusive cross-section data in Monte-Carlo particle transport simulations
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Development of a reaction ejectile sampling algorithm to recover kinematic correlations from inclusive cross-section data in Monte-Carlo particle transport simulations

机译:开发一种反应弹射采样算法,以从蒙特卡洛粒子传输模拟中的包含截面数据中恢复运动相关性

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摘要

A new phenomenological approach is developed to reproduce the stochastic distributions of secondary particle energy and angle with conservation of momentum and energy in reactions ejecting more than one ejectiles using inclusive cross-section data. The summation of energy and momentum in each reaction is generally not conserved in Monte-Carlo particle transport simulation based on the inclusive cross-sections because the particle correlations are lost in the inclusive cross-section data. However, the energy and angular distributions are successfully reproduced by randomly generating numerous sets of secondary particle configurations which are compliant with the conservation laws, and sampling one set considering their likelihood. This developed approach was applied to simulation of (n,xn) reactions (x ≥ 2) of various targets and to other reactions such as (n,np) and (n,2nα). The calculated secondary particle energy and angular distributions were compared with those of the original inclusive cross-section data to validate the algorithm. The calculated distributions reproduce the trend of original cross-section data considerably well especially in case of heavy targets. The developed algorithm is beneficial to improve the accuracy of event-by-event analysis in particle transport simulation.
机译:开发了一种新的现象学方法,使用包含的横截面数据,可以在喷射多个弹丸的反应中重现次级粒子能量和角度的随机分布,并保留动量和能量。在基于包含截面的蒙特卡洛粒子传输模拟中,通常不保存每个反应中能量和动量的总和,因为在包含截面数据中会丢失粒子相关性。但是,通过随机生成符合守恒定律的大量次级粒子构型并考虑其可能性对一组采样,可以成功地复制能量和角度分布。这种发达的方法适用于模拟各种目标的(n,xn)反应(x≥2)以及其他反应,例如(n,np)和(n,2nα)。将计算出的二次粒子能量和角度分布与原始包含的横截面数据进行比较,以验证算法。计算得出的分布可以很好地再现原始横截面数据的趋势,尤其是在目标较重的情况下。所开发的算法有利于提高粒子传输模拟中逐事件分析的准确性。

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