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System Design Analysis of a 0.22-THz Sheet-Beam Traveling-Wave Tube Amplifier

机译:0.22-THz片状行波电子管放大器的系统设计分析

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The primary constituents of a 0.22-terahertz (THz) sheet-beam traveling-wave tube (TWT) amplifier, composed of a staggered double grating array waveguide, have been designed for broadband THz operation ( $sim$30%) using the fundamental passband (TE-mode). Currently, we are looking into the possibility of a pulsed low-duty test of this device as a proof of principle (POP) and have been making efforts to construct the system. The optimally designed input coupler has $leq$ 1 dB insertion loss at 0.22 THz with $sim$ 75 GHz (34%) 1-dB matching bandwidths. A thin mica RF window provides a coupling bandwidth spanning multiple octaves. The collector is designed to have a jog for collecting the spent beam along the RF path coupled to the output RF window. Computer simulations show that the collector hybridized with a WR-4 window has $sim$60 GHz matching bandwidth with $sim - hbox{0.5} hbox{dB}$ insertion loss at 0.22 THz. The hybrid periodic permanent-magnet design combined with the quadrupole magnet (PPM-QM), intended for low-duty pulse operation in a proof-of-concept experiment, allows the elliptical sheet beam from an existing gun (25 : 1 aspect ratio) to unoptimized gun to have 73% beam transmission. The POP pulsed test is designed to be matched to our existing system, which will thereby tolerate beam transmission. However, a proper gun for the sheet-beam tunnel of the designed circuit will provide much better transmission. In our prior works, we successfully proved at W-band that the magnet design provided $>$ 99% beam transmission of a 10:1 aspect-n-n ratio sheet beam. Most of the TWT circuit components have been designed, and currently, a full simulation modeling effort is being conducted.
机译:0.22太赫兹(THz)片束行波管(TWT)放大器的主要组成部分由交错的双光栅阵列波导组成,已设计为使用基本通带进行宽带THz操作($ sim $ 30%)( TE模式)。目前,我们正在研究对该设备进行脉冲低功耗测试以作为原理验证(POP)的可能性,并一直在努力构建该系统。最佳设计的输入耦合器在0.22 THz时具有$ leq $ 1 dB的插入损耗,具有$ sim $ 75 GHz(34%)1 dB的匹配带宽。薄云母RF窗口提供了跨越多个八度的耦合带宽。收集器设计成具有点动装置,用于沿着耦合到输出RF窗口的RF路径收集用过的光束。计算机模拟显示,与WR-4窗口混合的收集器具有$ sim $ 60 GHz的匹配带宽,具有$ sim-hbox {0.5} hbox {dB} $的插入损耗,为0.22 THz。混合周期性永磁体设计与四极磁体(PPM-QM)结合在一起,旨在在概念验证实验中实现低占空比脉冲运行,允许来自现有喷枪的椭圆片状光束(长宽比为25:1)未优化的喷枪具有73%的光束透射率POP脉冲测试旨在与我们现有的系统匹配,从而可以容忍光束传输。但是,为设计电路的薄光束隧道使用合适的喷枪将提供更好的传输性能。在我们以前的工作中,我们成功地在W波段证明了磁体设计提供了纵横比为10:1的纵横比片状光束的99%以上的光束透射率。大多数TWT电路组件已经设计完毕,目前正在进行完整的仿真建模工作。

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