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Photonic-Band-Gap Traveling-Wave Gyrotron Amplifier

机译:光子带隙行波回旋加速器

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摘要

We report the experimental demonstration of a gyrotron traveling-wave-tube amplifier at 250 GHz that uses a photonic band gap (PBG) interaction circuit. The gyrotron amplifier achieved a peak small signal gain of 38 dB and 45 W output power at 247.7 GHz with an instantaneous −3 dB bandwidth of 0.4 GHz. The amplifier can be tuned for operation from 245–256 GHz. The widest instantaneous −3 dB bandwidth of 4.5 GHz centered at 253.25 GHz was observed with a gain of 24 dB. The PBG circuit provides stability from oscillations by supporting the propagation of transverse electric (TE) modes in a narrow range of frequencies, allowing for the confinement of the operating TE03-like mode while rejecting the excitation of oscillations at nearby frequencies. This experiment achieved the highest frequency of operation for a gyrotron amplifier; at present, there are no other amplifiers in this frequency range that are capable of producing either high gain or high output power. This result represents the highest gain observed above 94 GHz and the highest output power achieved above 140 GHz by any conventional-voltage vacuum electron device based amplifier.
机译:我们报告了使用光子带隙(PBG)相互作用电路的250 GHz旋流器行波管放大器的实验演示。回旋加速器放大器在247.7 GHz处实现了38 dB的峰值小信号增益和45 W输出功率,瞬时−3 dB带宽为0.4 GHz。可以将放大器调整为在245–256 GHz的频率范围内工作。观察到以253.25 GHz为中心的4.5 GHz的最宽瞬时-3 dB带宽,增益为24 dB。 PBG电路通过在狭窄的频率范围内支持横向电(TE)模式的传播来提供振荡稳定性,从而允许在类似于TE03的工作模式下进行限制,同时拒绝在附近频率下激发振荡。该实验实现了回旋加速器的最高工作频率。目前,在该频率范围内没有其他放大器能够产生高增益或高输出功率。该结果表示在任何基于常规电压真空电子器件的放大器中,在94 GHz以上观察到的最高增益和140 GHz以上观察到的最高输出功率。

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