论文标题

具有固定拐点和增强相互阻抗的三向蛇纹石慢波结构

Three-Way Serpentine Slow-Wave Structures with Stationary Inflection Point and Enhanced Interaction Impedance

论文作者

Marosi, Robert, Mealy, Tarek, Figotin, Alexander, Capolino, Filippo

论文摘要

我们介绍了蛇形波导慢波结构(SWS)的两个新型变体,通常用于毫米波行进波管(TWTS),具有增强的相互作用阻抗。使用分散工程与转移矩阵方法结合使用,我们将带有的波数分散剂与展示固定拐点(SIPS)以及非平稳或倾斜拐点(TIPS)的固定拐点(SIPS)相关联,在矩形波导的主要TE10模式内。在与带隙相关的第一个上的频段边缘下,脱落率在蛇形波导(SWG)的分散体中相遇的第一个上限边缘,该空间谐波与横梁隧道螺纹。 优化了结构几何形状,能够实现SIP,该SIP允许在所需的布里群区域的指定波数间隔上与电子束进行三模式同步。全波模拟用于获取和验证三向耦合波导中SIP的存在并微调几何形状,以使梁在SIP处或附近具有同步性。三向波导SWS在近乎固定的拐点的附近表现出适中的刺穿阻抗,这使得SWS几何形状可能有助于提高功率增益和基本提取效率的TWTS的基本提取效率。此外,引入的SWS几何形状具有定向耦合器样行为,该行为可以在SIP频率附近的频率下进行分布的功率提取。

We introduce two novel variants of the serpentine waveguide slow-wave structure (SWS), often utilized in millimeter-wave traveling-wave tubes (TWTs), with an enhanced interaction impedance. Using dispersion engineering in conjunction with transfer matrix methods, we tune the guided wavenumber dispersion relation to exhibit stationary inflection points (SIPs), and also non-stationary, or tilted inflection points (TIPs), within the dominant TE10 mode of a rectangular waveguide. The degeneracy is found below the first upper band-edge associated with the bandgap where neighboring spatial harmonics meet in the dispersion of the serpentine waveguide (SWG) which is threaded by a beam tunnel. The structure geometries are optimized to be able to achieve an SIP which allows for three-mode synchronism with an electron beam over a specified wavenumber interval in the desired Brillouin zone. Full-wave simulations are used to obtain and verify the existence of the SIP in the three-way coupled waveguide and fine-tune the geometry such that a beam would be in synchronism at or near the SIP. The three-way waveguide SWS exhibits a moderately high Pierce impedance in the vicinity of a nearly-stationary inflection point, making the SWS geometry potentially useful for improving the power gain and basic extraction efficiency of millimeter-wave TWTs. Additionally, the introduced SWS geometries have directional coupler-like behavior, which enables distributed power extraction at frequencies near the SIP frequency.

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