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Rigorous computation of time-dependent electromagnetic fields in gyrotron cavities excited by internal sources

机译:严格计算内部源激发的回旋腔中随时间变化的电磁场

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摘要

Computation in frequency, as well as in time domain of the electromagnetic field in aperture-coupled cavities which are excited by electron beams, requires an accurate representation of the field. Furthermore, a fast tool for simulation of beam-field interaction in electron tubes is desirable. Application of the modal expansion method, which utilizes both the solenoidal and the irrotational eigenfunctions of the equivalent short-circuited cavity, is generally rigorous but numerically inefficient. In this contribution, three main steps towards a more accurate and simultaneously more efficient analysis are presented. First, it is shown how the irrotational magnetic eigenfunctions can be eliminated from the analysis. Furthermore, some poorly convergent series in the frequency domain analysis as well as in the time-domain analysis are replaced by analytic expressions. Finally, the modal analysis is directly formulated in time domain using rigorous boundary conditions. Numerical results are presented for idealized structures with impressed current density and for self-consistent calculations which are compared to analytical or to numerical results, respectively. Thus, excellent accuracy of the developed method is proved and significant simplifications are justified. For weakly inhomogeneous cavities, the influence of mode conversion on field profile and on numerical aspects is also discussed.
机译:由电子束激发的孔耦合腔中的电磁场的频率以及时域的计算都需要精确表示该场。此外,需要一种用于模拟电子管中的束-场相互作用的快速工具。利用等效短路腔的电磁和非旋转本征函数的模态展开方法通常是严格的,但在数值上是无效的。在此贡献中,提出了实现更准确,同时更有效的分析的三个主要步骤。首先,显示了如何从分析中消除非旋转磁本征函数。此外,在频域分析和时域分析中的一些收敛性不佳的序列被解析表达式代替。最后,使用严格的边界条件在时域中直接进行模态分析。给出了具有显着电流密度的理想结构的数值结果,以及与计算结果或数值结果相比分别进行自洽计算的结果。因此,证明了所开发方法的优异准确性,并证明了其明显的简化性。对于弱不均匀的空腔,还讨论了模转换对场轮廓和数值方面的影响。

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