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An Improved Representation of AC Space-Charge Fields in Steady-State Simulation Codes for Linear-Beam Tubes

机译:线性束管稳态仿真代码中交流空间电荷场的改进表示

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Accurate evaluation of the ac space-charge electric field is required in order to obtain accurate predictions for linear-beam-tube performance using steady-state simulation codes. The space-charge field is commonly calculated under the assumption that the beam current density and space-charge fields are all periodic in time and locally periodic in axial distance. In this brief, it is shown by example that there are cases in which it is important, in both the small and large signal regimes, to include departures from this “local spatial periodicity” assumption. We find in the cases that we have studied that it is sufficient to keep a single additional term, proportional to the spatial derivative of the bunched beam current density, in the expression for the space-charge electric field. The resulting expression is much faster to evaluate numerically than a full convolution integral over all axial wavelengths. The improved representation is suitable for use in both small- and large-signal linear-beam simulation codes. It has been implemented and tested in the CHRISTINE large-signal TWT simulation code.
机译:为了使用稳态仿真代码获得对线性束管性能的准确预测,需要对交流空间电荷电场进行准确评估。通常在假设束电流密度和空间电荷场在时间上都是周期性且在轴向距离上是局部周期性的假设下计算空间电荷场。在此摘要中,通过示例显示了在某些情况下,重要的是在小信号和大信号两种情况下,都应包括偏离此“局部空间周期性”假设的情况。我们发现,在我们研究的情况下,在空间电荷电场的表达式中,保持与束流电流密度的空间导数成比例的单个附加项就足够了。与在所有轴向波长上的完整卷积积分相比,所得表达式在数值上进行评估要快得多。改进的表示形式适用于小信号和大信号线性波束仿真代码。它已在CHRISTINE大信号TWT仿真代码中实现和测试。

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