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Numerical modeling of radiative recombination during ionization of atoms by means of particle-in-cell simulation

机译:原子电离过程中原子电离过程中辐射复合的数值模拟

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In this paper, a heuristic algorithm based on particle-in-cell (PIC) simulation is introduced to investigate the harmonic generation during the ionization and formation of plasma by a non-relativistic laser field when it propagates through hydrogen atoms. The harmonic generation is considered for the radiative recombination of an ionized electron with its nearest ion. The ionization algorithm is improved by considering the Stark effect and nonzero velocity for ionized electrons. Energy conservation is evaluated during the recombination process. In our code, for the first time, Maxwell's equations are integrated for harmonic fields in a separate mesh using the artificial recombination current as a source term. The simulation results are then used to illustrate the intensity spectrum of generated fields. It is shown that the initial momentum of ionized electrons affects the harmonic spectrum because the energy of radiated photons varies with the electron energy.
机译:本文介绍了一种基于粒子模拟的启发式算法,研究了非相对论激光场在氢原子中传播时电离和等离子体形成过程中产生的谐波。谐波的产生被认为是电离电子与其最接近的离子的辐射复合。通过考虑斯塔克效应和电离电子的非零速度来改进电离算法。重组过程中会评估节能效果。在我们的代码中,麦克斯韦方程首次使用人工重组电流作为源项,在单独的网格中针对谐波场进行了积分。然后将仿真结果用于说明所产生场的强度谱。结果表明,电离电子的初始动量会影响谐波频谱,因为辐射光子的能量随电子能量而变化。

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