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Simulation of Microfabricated Folded Waveguide Traveling-Wave Tube as Broadband Terahertz Amplifier

机译:微制造折叠波导行波管作为宽带太赫兹放大器的仿真

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In this paper, electromagnetic field simulations and related results of a 400GHz central frequency microfabricated folded waveguide traveling-wave tube were presented, for a broadband terahertz amplifier. 3-D cold-test (absence of real electron beam) and particle-in-cell simulations were carried out. Two models of different beam tunnel cross-section, i.e. cylindrical and rectangular, were simulated. It was found that the rectangular tunnel model is similar to the cylindrical tunnel model in cold-test properties, when the transverse square side length is 85% to the diameter of the cylindrical tunnel. The three-dB bandwidth is 40.6GHz and the maximum gain is 15.8dB at 393.3GHz, for an 18.5mm-long (60periods) loss-free circuit, predicted by Pierce small signal theory. Particle-in-cell simulation also revealed the three-dB bandwidth of ~35GHz and ~30GHz for cylindrical-tunnel model and rectangular-tunnel model, respectively, for a 29.6mm-long (96periods) loss-free circuit with concentrated attenuator. It is also found that the gain of rectangular-tunnel model is about 5dB lower than that of cylindrical-tunnel model, for 29.6mm-long circuit. The loss-free saturated output power and the linear gain of cylindrical-tunnel model at 400GHz are 6.9W and 28dB, respectively.
机译:本文介绍了宽带太赫兹放大器的400GHz中央频率微耦合折叠波导行波管的电磁场模拟及相关结果。进行3-D冷 - 测试(不存在真实电子束)和粒子细胞仿真。模拟了两种不同光束隧道横截面的模型,即圆柱形和矩形。据发现,所述矩形隧道模型类似于圆筒形通道模型冷测试属性,当横向正方形边长为85%至圆筒形通道的直径。三-DB带宽为40.6GHz,最大增益为15.8dB,393.3GHz,对于18.5mm-long(60%)的无损电路,通过Pierce小信号理论预测。粒子电池模拟还揭示了圆柱形隧道模型和矩形隧道模型的三-DB带宽和〜30GHz,用于具有浓缩衰减器的29.6mm长(96%)的无损耗电路。还发现矩形隧道模型的增益比圆柱形隧道模型的增益低约5dB,电路为29.6mm隧道模型。无损耗的饱和输出功率和400GHz圆柱形隧道模型的线性增益分别为6.9W和28dB。

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