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首页> 外文期刊>IEEE Transactions on Plasma Science >Planar orotron experiments in the millimeter-wavelength band
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Planar orotron experiments in the millimeter-wavelength band

机译:毫米波波段的平面回旋加速器实验

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The planar orotron is introduced and shown to be a viable source of moderate power and of millimeter and submillimeter wavelength radiation. The resonator is a slow-wave structure consisting of a rectangular metal grating which is opposed by a planar conducting boundary. The device operates in the surface harmonic mode: electrons interact with axially traveling waves which evanesce above the grating surface, and the amplified radiation leaves the resonator in parallel with the beam axis. Operation in both the forward and backward mode is possible. The resonator cavity is designed to enhance longitudinal reflections, and thereby enhance the output power and efficiency. The output frequency and tuning range are determined by the grating parameters. Experiments performed in the backward mode have produced radiation from 30 to 110 GHz at power levels ranging from 100 W to 2 kW. The efficiencies vary from 1 to 7%. The measured frequencies are closely predicted by a theory which is also presented.
机译:平面回旋加速器被引入,并被证明是中等功率以及毫米和亚毫米波长辐射的可行来源。该谐振器是一种慢波结构,由矩形金属光栅组成,该矩形金属光栅与平面导电边界相对。该器件以表面谐波模式工作:电子与在光栅表面上方散逸的轴向行波相互作用,放大后的辐射与光束轴平行离开谐振器。可以在前进和后退模式下操作。谐振腔设计为增强纵向反射,从而提高输出功率和效率。输出频率和调谐范围由光栅参数确定。在向后模式下进行的实验以100 W至2 kW的功率水平产生了30至110 GHz的辐射。效率从1到7%不等。所测得的频率也通过提出的理论来精确预测。

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