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Enhancement of the output power of terahertz folded waveguide oscillator by two parallel electron beams

机译:两个平行电子束提高太赫兹折叠波导振荡器的输出功率

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摘要

A novel two-beam folded waveguide (FW) oscillator is presented for the purpose of gaining higher power with a small-size circuit compared with the normal FW oscillator. The high-frequency characteristics of the two-beam FW, including dispersion and interaction impedance, were investigated by the numerical simulation and compared with the one-beam FW. The radio-frequency loss of the two-beam FW was also analyzed. A 3-D particle-in-cell code CHIPIC was applied to analyze and optimize the performance of a G-band two-beam FW oscillator. The influences of the distance between the two beam tunnels, beam voltage, the number of periods, magnetic field, radius of beam tunnel, and the packing ratio on the circuit performance are investigated in detail. Compared with a one-beam circuit, a larger output power of the two-beam circuit with the same beam power was observed by the simulation. Moreover, the start-oscillation current of two-beam circuit is much lower than the one-beam circuit with better performance. It will favor the miniaturized design of the high-power terahertz oscillator. (C) 2015 AIP Publishing LLC.
机译:提出了一种新颖的两光束折叠波导(FW)振荡器,其目的是与常规FW振荡器相比,以较小的电路获得更高的功率。通过数值模拟研究了两光束FW的高频特性,包括色散和相互作用阻抗,并将其与单光束FW进行了比较。还分析了两束FW的射频损耗。使用3-D单元格内粒子代码CHIPIC来分析和优化G波段两束FW振荡器的性能。详细研究了两个电子束隧道之间的距离,电子束电压,周期数,磁场,电子束隧道的半径以及填充率对电路性能的影响。通过仿真,与单光束电路相比,在相同光束功率的情况下,双光束电路的输出功率更大。而且,两束电路的启动振荡电流远低于单束电路,具有更好的性能。这将有利于大功率太赫兹振荡器的小型化设计。 (C)2015 AIP Publishing LLC。

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