论文标题
在粒子中模拟中结合电子效应的建模
Modeling of bound electron effects in particle-in-cell simulation
论文作者
论文摘要
为了在粒子中包含绑定的电子效应(PIC)模拟中,我们提出了一个模型,其中可以包括部分离子离子对外部电磁场的偶极子成分的响应。离子在我们的模型中没有将宏观离子粒子视为没有内部结构的单个粒子,而是具有由中央核和有界电子云组成的结构。这两个部分都经历了外部电磁场和内部库仑田的相互作用。这样,可以在PIC仿真中正确建模部分电离培养基的激光散射效应。中性培养基中的激光传播和晶体结构中激光的bragg散射已通过根据我们的模型作为基准进行修改的PIC代码模拟。我们的模型可能会发现研究一些有趣的问题的应用,例如晶体中X射线激光驱动的韦克场加速度,X射线激光驱动的高能量密度物理学以及部分电离的非线性光学材料中的强烈激光繁殖等。
To include the bound electron effects in particle-in-cell (PIC) simulation, we propose a model in which the response of the dipole components of partially ionized ions to external electromagnetic fields can be included. Instead of treating the macro-ion particle as a single particle without an internal structure, the ions are considered to have a structure composed of a central nucleus and a bounded electron cloud in our model. The two parts experience the interactions of both the external electromagnetic fields and the internal Coulomb fields. In this way, the laser scattering effects by a partially ionized medium can be modeled properly in the PIC simulation. The laser propagation in a neutral medium and the Bragg scattering of the laser in crystal structure have been simulated with a PIC code modified based on our model as the benchmark. Our model may find applications to study some interesting problems, such as the x-ray laser-driven wakefield acceleration in crystals, the x-ray laser-driven high energy density physics, and intense laser propagation in partially ionized nonlinear optical materials, etc.