首页> 外文会议>Mathematics and Computations, Supercomputing in Nuclear Applications and Monte Carlo International Conference >NEW ALGORITHM FOR MONTE CARLO PARTICLE-TRANSPORT SIMULATION TO RECOVER EVENT-BY-EVENT KINEMATIC CORRELATIONS OF REACTIONS EMITTING CHARGED PARTICLES
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NEW ALGORITHM FOR MONTE CARLO PARTICLE-TRANSPORT SIMULATION TO RECOVER EVENT-BY-EVENT KINEMATIC CORRELATIONS OF REACTIONS EMITTING CHARGED PARTICLES

机译:蒙特卡洛粒子传输模拟的新算法,以恢复带电粒子反应的逐个事件的运动学相关性

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We develop a new radiation transport algorithm to recover event-by-event quantities based on inclusive cross-section data and conservation of energy and momentum. In radiation transport calculations based on inclusive cross-section data, conventional algorithms can predict the average behavior of particles; however, they do not consider fluctuations around the average. Moreover, calculating the kinematics of secondary particles and the recoil residues resulting from reactions is beyond their scope. The algorithm developed in this study reproduces particle emission in each reaction in exact accordance with the chosen reaction channel. The algorithm makes it possible to predict event-by-event quantities, such as nuclear recoil, secondary particles and energy spectra for all types of reaction channels. To evaluate the impact of the proposed algorithm, we use it for simulations to evaluate the dose-conversion coefficient, analyze the soft error rate and predict radiation damage. The results of these simulations show that the proposed algorithm is indispensable for such studies.
机译:我们开发了一种新的辐射传输算法,可以根据包含在内的横截面数据以及能量和动量守恒来恢复逐事件的数量。在基于包容性横截面数据的辐射传输计算中,常规算法可以预测粒子的平均行为;因此,可以预测粒子的平均行为。但是,他们没有考虑平均值附近的波动。而且,计算次级粒子的运动学和由反应产生的反冲残余物超出了它们的范围。这项研究中开发的算法完全根据所选的反应通道,再现了每个反应中的粒子发射。该算法可以预测所有事件反应通道的逐事件数量,例如核后坐力,次级粒子和能谱。为了评估所提出算法的影响,我们将其用于仿真以评估剂量转换系数,分析软错误率并预测辐射损伤。这些仿真结果表明,所提出的算法对于此类研究是必不可少的。

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