Third harmonic frequency multiplication of a two-stage tapered gyro-TWT amplifier

C. Baik, S. Jeon, D. Kim, G. Park, N. Sato, K. Yokoo
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引用次数: 1

Abstract

The third harmonic frequency multiplication is experimentally verified using a two-stage tapered gyrotron traveling-wave tube amplifier in low-power operation. The third harmonic frequency multiplication is predicted and investigated using a self-consistent large-signal theory and a particle-in-cell code simulation. Both results show a good agreement in frequency multiplication and power amplification. The interaction between a 30 kV axis-encircling electron beam with a drive signal in the tapered waveguide of the input stage modulates the electron beam at the fundamental cyclotron harmonic, then the third harmonic component of the modulated beam current is chosen to be extracted in the tapered output stage. In the proof-of-principle experiment, X-band drive signals from 10.6 to 12 GHz are multiplied by three times to be Ka-band output frequencies from 31.8 to 36 GHz, showing consistent results with theoretical predictions when a 30 kV, 160 mA electron beam is used.
两级锥形陀螺行波管放大器的三次谐波倍频
用两级锥形回旋管行波管放大器在低功耗下对三次谐波倍频进行了实验验证。利用自洽大信号理论和细胞内粒子编码模拟对三次谐波倍频进行了预测和研究。结果表明,两种方法在倍频和功率放大方面具有较好的一致性。在输入级的锥形波导中,利用30kv绕轴电子束与驱动信号的相互作用对电子束进行基波回旋谐波调制,然后在锥形输出级中选取调制光束电流的三次谐波分量进行提取。在原理验证实验中,将10.6 ~ 12 GHz的x波段驱动信号乘以3倍,得到31.8 ~ 36 GHz的ka波段输出频率,当使用30kv、160ma的电子束时,结果与理论预测一致。
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