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Design and Measurement of a Terahertz Double Staggered Grating Waveguide With an Arc-Shaped Beam Tunnel

机译:弧形束隧道的太赫兹双交错光栅波导的设计与测量

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A millimeter-wavebanddouble staggeredgratingwaveguide (DSGW) with an arc-shaped beam tunnelwas previously proposed for sheet beam traveling wave tubes. In this article, the design, fabrication, and cold test of a terahertz band DSGW with an arc-shaped beam tunnel are presented. Simulations demonstrated that the novel DSGW would have a higher coupling impedance and a better beam wave interaction in comparison to the conventional DSGW with a linear-shaped beam tunnel. Beam wave interaction simulations showed that the output power and the electronic efficiency, respectively, increased from similar to 420 W to similar to 580 W and from 7.0% to 9.3% at 240 GHz. These two kinds ofDSGWswere fabricatedby using the nanocomputer numerical control (CNC) milling andwire cutting techniques, and their performances were cold tested by using a vector network analyzer. The measurement results were in good agreementwith the simulations and demonstrated that both the traditional and novel DSGWs achieved a wide frequency bandwidth of similar to 40 GHz (0.22-0.26 THz) with a transmission coefficient S-21 better than -2.7/-3.0 dB and a reflection coefficient S-11 lower than -13.0/-15.7 dB, respectively.
机译:先前提出了具有弧形束隧道的毫米波段双交错光栅波导(DSGW),用于薄板束行波管。本文介绍了具有弧形束隧道的太赫兹频段DSGW的设计,制造和冷测试。仿真表明,与具有线性束隧道的常规DSGW相比,新型DSGW具有更高的耦合阻抗和更好的束波相互作用。束波相互作用模拟表明,输出功率和电子效率分别从相似的420 W增加到相似的580 W,并在240 GHz下从7.0%增加到9.3%。通过纳米计算机数控铣削和线切割技术制备了这两种DSGW,并使用矢量网络分析仪对其性能进行了冷测试。测量结果与仿真结果吻合良好,表明传统和新型DSGW均实现了类似于40 GHz(0.22-0.26 THz)的宽带宽,传输系数S-21优于-2.7 / -3.0 dB,并且反射系数S-11分别低于-13.0 / -15.7 dB。

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