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首页> 外文期刊>International journal of numerical modelling >Dispersion characteristics and electromagnetic properties of semicircularly corrugated slow-wave structure for backward-wave oscillators
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Dispersion characteristics and electromagnetic properties of semicircularly corrugated slow-wave structure for backward-wave oscillators

机译:半圆形波纹慢波结构对后向振荡器的分散特性和电磁特性

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The dispersion relation of semicircularly corrugated slow-wave structure (SCCSWS) is calculated and verified numerically using synthetic technique. The metallic periodic structure resonates at discrete frequencies when both ends of it are shorted and excited properly. From the discrete frequencies of the axial modes of the resonant cavity, continuous dispersion curve for both the fundamental and the higher order passband modes (TM01-TM03) are generated. The generated dispersion curve is compared with the analytical results, which agree excellently with a maximum deviation of 1.33% for TM01 mode, 1.94% for TM02 mode, and 1.30% for TM03 mode. The electromagnetic field patterns of SCCSWS in both radial and axial direction are also calculated and compared with analytical field patterns. Comparative results validate both the obtained dispersion relation and field patterns of SCCSWS, which can be employed as viable alternative of the existing slow-wave structure (SWS) in high-power microwave devices.
机译:使用合成技术计算和验证半圆形波纹慢波结构(SCCSW)的分散关系。金属周期结构在离散频率以离散频率产生时,当它的两端都被适当地短路和兴奋。根据谐振腔的轴向模式的离散频率,产生用于基本和高阶通带模式(TM01-TM03)的连续色散曲线。将生成的色散曲线与分析结果进行比较,其同意TM01模式的最大偏差为1.33%,TM02模式为1.94%,TM03模式为1.30%。还计算和将SCCSWS的电磁场模式与分析场图案进行比较。比较结果验证了SCCSWS的获得的分散关系和现场模式,其可以用作高功率微波器件中现有的慢波结构(SWS)的可行替代方案。

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