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The study of a coaxial gyrotron with misaligned inner rod

机译:内杆未对准的同轴回旋管的研究

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The effects of a tiny misalignment of the inner rod in a coaxial-gyrotron on the eigenvalue, quality factor Q, resonant frequency, and electronic efficiency are investigated. As a practical application, with the electronic velocity spread and cavity wall resistivity being taken into account, the beam-wave interaction of a 170 GHz MW coaxial-gyrotron operating with TE31,12 mode has been studied. The results show that the eigenvalue of the operating mode decreases slightly when the ratio of misalignment to outer radius D/R increases for the case of smaller values of the ratio of outer to inner radius C = R/R-in , but is unchanged with the increasing value of D/R for the case of large ratio of C. The electronic efficiency decrease slightly when DIR increases within the range of 0-0.015. However it decreases at a faster rate when DIR is larger than 0.015. If DIR increases to 0.024, the efficiency decreases sharply to only about 2.2%. For both cold and hot cavity, the resonant frequency decreases slightly with D/R increasing. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了同轴回旋管中内杆的微小错位对特征值,品质因数Q,谐振频率和电子效率的影响。在实际应用中,考虑了电子速度传播和腔壁电阻率,研究了以TE31,12模式工作的170 GHz MW同轴回旋管的束波相互作用。结果表明,当外偏内径比C = R / R-in较小时,当偏心距与外半径D / R之比增大时,工作模式的特征值会略有降低,但在当C的比率较大时,D / R的增加值。当DIR在0-0.015的范围内增加时,电子效率会略有下降。但是,当DIR大于0.015时,它以更快的速度减小。如果DIR增加到0.024,效率将急剧下降至仅约2.2%。对于冷腔和热腔,谐振频率都随着D / R的增加而略有降低。 (C)2015 Elsevier Ltd.保留所有权利。

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