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Particle-in-cell simulation of transport and energy deposition of intense proton beams in solid-state materials

机译:固态材料中强度质子梁的输运和能量沉积的粒子细胞模拟

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摘要

A particle-in-cell (PIC) simulation code is used to investigate the transport and energy deposition of an intense proton beam in solid-state material. This code is able to simulate close particle interactions by using a Monte Carlo binary collision model. Such a model takes into account all related interactions between the incident protons and material particles, e.g., proton-nucleus, proton–bound-electron, and proton–free-electron collisions. This code also includes a Monte Carlo model for the collisional ionization and electron-ion recombination as well as the depression of the ionization potential by shielding of surrounding particles. Moreover, for intense proton beams, in order to include collective electromagnetic effects, significantly speed up the simulation, and simultaneously avoid numerical instabilities, an approach that combines the PIC method with a reduced model of high-density plasma based on Ohm’s law is used. Simulation results indicate that the collective electromagnetic effects have a significant influence on the transport and energy deposition of proton beams. The Ohmic electric field would increase the stopping power and leads to a shortened range of proton beams in solid. The magnetic field would localize the energy deposition by collimating proton beams, which would otherwise be deflected by the collisions with nuclei.
机译:用于粒子 - 细胞(PIC)仿真代码用于研究固态材料中强度质子束的传输和能量沉积。该代码能够通过使用Monte Carlo二进制碰撞模型来模拟密切粒子交互。这种模型考虑了入射质子和材料颗粒之间的所有相关相互作用,例如质子 - 核,质子结合 - 电子和非固有电子碰撞。该代码还包括用于碰撞电离和电子离子复合的蒙特卡罗模型以及通过屏蔽周围颗粒的电离电位的凹陷。此外,对于强烈的质子束,为了包括集体电磁效应,显着加速模拟,并同时避免数值不稳定性,使用基于欧姆的法律的高密度等离子体模型结合了PIC方法的方法。仿真结果表明,集体电磁效应对质子梁的运输和能量沉积具有显着影响。欧姆电场将增加停止功率并导致固体的缩短范围的质子束。磁场将通过准直质子束定位能量沉积,否则将由碰撞与细胞核偏转。

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