Theoretical and Experimental Investigation of the Two-Gap Multi-Channel Resonator with Quasi-Fractal Strip Elements

A. Miroshnichenko, V. Tsarev, A. Novikov, N. A. Akafyeva, M. Chernyshev
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Abstract

Results of numerical modeling of electrodynamic and electronic parameters and some experimental data of the double-gap multi- channel cylindrical cavity resonator with the suspended dielectric substrate and the quasi- fractal strip inductive elements are given in this article. The quasi-fractal elements were executed in the form of Sierpinski's triangle. Use of a strip element in the form of the Sierpinski's triangle leads to reduction of resonant frequency of an antiphase mode and practically doesn't change an inphase mode. At the same time growth of characteristic resistance R/Q of the resonator is observed. Calculations of electronic parameters have shown a possibility of use the considered resonator in the low voltage multi-beams klystron amplifiers and working without self-excitation.
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准分形条元双间隙多通道谐振腔的理论与实验研究
本文给出了基于悬浮介质衬底和准分形条形电感元件的双间隙多通道圆柱腔谐振器的电动力学和电子参数的数值模拟结果和部分实验数据。拟分形元素以Sierpinski三角形的形式执行。使用谢尔宾斯基三角形形式的条形元件可以降低反相模式的谐振频率,而实际上不会改变正相模式。同时观察到谐振腔特性电阻R/Q的增长。电子参数的计算表明,所考虑的谐振腔在低压多光束速调管放大器中使用和无自激工作的可能性。
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