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Improved Corrugation Cross-Sectional Shape in Terahertz Double Corrugated Waveguide

机译:太赫兹双层波纹波导中改进的波纹横截面形状

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摘要

The double corrugated waveguide, with square cross-sectional corrugations, was demonstrated as an effective slow-wave structure for terahertz vacuum electron devices. The moderate losses and the good interaction impedance, in both the forward- and backward-wave regimes, enable the design of tubes at terahertz frequencies. However, significant performance improvements would derive from a further reduction of losses and an increase of the interaction impedance. Different new cross-sectional shapes of the corrugations in the double corrugated waveguide are proposed to reduce the losses and improve the interaction impedance. A relevant improvement of the tube performance in both the forward- and backward-wave regimes is obtained by using the proposed new improved cross-sectional shapes.
机译:具有方形横截面波纹的双波纹波导被证明是用于太赫兹真空电子器件的有效慢波结构。在前向和后向波两种情况下,适当的损耗和良好的相互作用阻抗使得能够以太赫兹频率设计电子管。但是,性能的显着提高将来自损耗的进一步降低和相互作用阻抗的增加。提出了双波纹波导中波纹的不同的新横截面形状,以减少损耗并提高相互作用阻抗。通过使用提出的新的改进的横截面形状,可以在前向和后向波域中对管子性能进行相应的改进。

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