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Influence of Annular Beam Displacement on the Performance of a High-Power Gyrotron

机译:环形光束位移对大功率回旋管性能的影响

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In this paper, we present the results of an experimental study on the influence of the lateral misalignment between the axes of the annular electron beam and the cavity on the performance of a 1-MW 140-GHz gyrotron. The subject of the study is of practical interest. On one hand, the discrepancy between numerical simulations of the gyrotron performance and experimental results could by partially attributed to the beam misalignment. On the other, it is in practice very difficult to reach the necessary tolerances in series production of high-power high-frequency $({>}{rm 100}~{rm GHz})$ gyrotrons. The problem actually will become more demanding with the increase of the operating frequency of the working mode because the required accuracy scales with the wavelength of the electromagnetic wave. It is shown that a large displacement of the annular beam from the cavity axis may lead to the excitation of a competing mod which is not excited under normal conditions. The excitation of the main mode is observed, however, at a beam–cavity displacement of up to 0.8 mm.
机译:在本文中,我们介绍了关于环形电子束轴与腔之间的横向未对准对1-MW 140 GHz回旋管性能的影响的实验研究结果。该研究的主题具有实际意义。一方面,回旋管性能的数值模拟与实验结果之间的差异可能部分归因于电子束未对准。另一方面,在实践中,在大功率高频$({{}} {rm 100}〜{rm GHz})$ 陀螺仪的批量生产中,很难达到必要的公差。随着工作模式工作频率的增加,该问题实际上将变得更加棘手,因为所需的精度随电磁波的波长而定。结果表明,环形光束从空腔轴的大位移可能会导致竞争模型的激发,而该竞争模型在正常条件下不会被激发。然而,在最大0.8 mm的束腔位移下观察到了主模的激发。

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