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Three-dimensional simple conformal symplectic particle-in-cell methods for simulations of high power microwave devices

机译:用于大功率微波器件仿真的三维简单共形辛在单元内辛粒子方法

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To overcome the staircase error in the traditional particle-in-cell (PIC) method, a three dimensional (3D) simple conformal (SC) symplectic PIC method is presented in this paper. The SC symplectic finite integration technique (FIT) scheme is used to advance the electromagnetic fields without reduction of the time step. Particles are emitted from conformal boundaries with the charge conserving emission scheme and moved by using the relativistic Newton-Lorentz force equation. The symplectic formulas of auxiliary-differential equation, complex frequency shifted perfectly matched layer (ADE-CFS-PML) are given for truncating the open boundaries, numerical results show that the maximum relative error of truncation is less than 90 dB. Based on the surface equivalence theorem, the computing algorithms of conformal signals' injection are given, numerical results show that the algorithms can give the right mode patterns and the errors of cutoff frequencies could be as low as 0.1%. To verify the conformal algorithms, a magnetically insulated line oscillator is simulated, and the results are compared to those provided by using the 2.5D UNIPIC code, which show that they agree well. The results also show that the high order symplectic integration method can suppress the numerical Cherenkov radiation. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了克服传统的单元格粒子(PIC)方法中的阶梯误差,本文提出了一种三维(3D)简单保形(SC)辛PIC方法。 SC辛有限积分技术(FIT)方案用于在不减少时间步长的情况下推进电磁场。粒子从守恒边界以守恒电荷发射方案发射,并通过相对论牛顿-洛伦兹力方程移动。给出了辅助微分方程,复频移完美匹配层(ADE-CFS-PML)的辛式来截断开放边界,数值结果表明截断的最大相对误差小于90 dB。根据表面等效定理,给出了共形信号注入的计算算法,数值结果表明,该算法能给出正确的模式图,截止频率的误差可低至0.1%。为了验证保形算法,对磁绝缘线振荡器进行了仿真,并将结果与​​使用2.5D UNIPIC代码提供的结果进行了比较,这表明它们非常吻合。结果还表明,高阶辛积分方法可以抑制数值切伦科夫辐射。 (C)2016 Elsevier B.V.保留所有权利。

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