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3-D Simulations and Design of Multistage Depressed Collectors for Sheet Beam Millimeter Wave Vacuum Electron Devices

机译:片束毫米波真空电子器件多级压低集电极的3D模拟与设计

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摘要

There is an increasing interest in sheet electron beam-based vacuum electron devices from the microwave through terahertz region. As with standard pencil beam devices, it is desirable to increase overall net efficiency through the use of multistage depressed collectors. The sheet electron beam, however, brings unique challenges to this task due to the elliptical cross section of the beam. This paper focuses on the comprehensive 3-D simulation modeling of the electron beam dynamics for the ac modulated sheet beam topology from the beam-wave interaction region up to the designed energy recovery structure, i.e., the multistage depressed collector. For purposes of illustration, the design and analysis of a five-stage depressed collector for a W-band sheet beam klystron using the 3-D electromagnetic particle-in-cell (PIC) finite difference time domain code MAGIC is described herein. Numerous PIC simulations were carried out to determine the optimum operating parameters. The effects of the secondary electrons on the recovery efficiency and the electron back streaming were both investigated. To accommodate the elliptical cross section of the sheet beam, the option of adding a racetrack-like structure to decrease the back streaming was also explored. Through optimization, a recovery efficiency of 88.38% was achieved, with a minimized total electron back-streaming fraction of 0.25%.
机译:从微波到太赫兹区,基于薄板电子束的真空电子器件越来越受到关注。与标准的笔形射束装置一样,希望通过使用多级凹陷收集器来提高整体净效率。然而,由于电子束的椭圆形横截面,薄板电子束为此任务带来了独特的挑战。本文着重于从束波相互作用区域到设计的能量回收结构(即多级凹陷式收集器)的交流调制薄板束拓扑结构的电子束动力学的综合3-D模拟建模。为了说明的目的,本文描述了使用3-D电磁单元内粒子(PIC)有限差分时域码MAGIC的用于W波段薄板速调管的五级凹陷收集器的设计和分析。进行了许多PIC仿真,以确定最佳操作参数。均研究了二次电子对回收效率和电子回流的影响。为了适应薄板梁的椭圆形横截面,还探讨了添加类似跑道的结构以减少回流的选项。通过优化,实现了88.38%的回收效率,而总电子回流率最小为0.25%。

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