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Design of a Sheet-Beam Electron-Optical System for a Microfabricated W -Band Traveling-Wave Tube Using a Cold Cathode

机译:用冷阴极制备微细W波段行波管的片束电子光学系统

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A design of a sheet-beam electron-optical system (EOS) for a microfabricated W-band traveling-wave tube (TWT) is presented. The proposed TWT is based on a rectangular field-emitter array (FEA) and a planar helix slow-wave structure with straight-edge connections (PH-SEC). The PH-SEC is designed to work with a 5-kV and 10-mA sheet electron beam. The particle-in-cell simulation results show that the TWT can give 3.7-W peak power at 110 GHz with a 3-dB bandwidth of 60%. The EOS consists of a novel beam-forming electrode, a novel anode, a magnetic circuit to provide solenoidal focusing magnetic field, and a depressed collector. Except for the magnetic circuit, all components are compatible with microfabrication. Moreover, the anode and the collector can be fabricated together with the PH-SEC using the same process steps. Using an FEA with the dimensions of 1000 × 500 μm2, a beam of cross section 160 × 40 μm2 is generated and under ideal conditions 100% transmission is achieved through a 25-mm-long drift tunnel of cross section 240 × 100 μm2. The effects of misalignments of the FEA, anode, and the magnetic circuit are investigated, and the limits on misalignments are determined to achieve satisfactory beam transmission.
机译:提出了一种用于微细W波段行波管(TWT)的片束电子光学系统(EOS)的设计。拟议的TWT基于矩形场发射器阵列(FEA)和具有直边连接(PH-SEC)的平面螺旋慢波结构。 PH-SEC设计用于5kV和10mA的薄电子束。单元中的粒子仿真结果表明,TWT在110 GHz时具有3.7W的峰值功率,且3dB带宽为60%。 EOS由新颖的束形成电极,新颖的阳极,提供螺线管聚焦磁场的磁路和凹陷的集电极组成。除磁路外,所有组件均与微加工兼容。而且,可以使用相同的工艺步骤将阳极和集电体与PH-SEC一起制造。使用尺寸为1000×500μm2的有限元分析,可以产生横截面为160×40μm2的光束,并且在理想条件下,可以通过25 mm长的横截面为240×100μm2的漂移隧道实现100%的透射率。研究了FEA,阳极和磁路未对准的影响,并确定了未对准的限制,以实现令人满意的光束传输。

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