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Present status of a 17.1-GHz four-cavity frequency-doubling coaxial gyroklystron design

机译:17.1 GHz四腔倍频同轴回旋速调管设计的现状

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A design of a Ku-band 17.1-GHz four-cavity coaxial gyroklystron amplifier for driving future linear colliders is presented. The X-band input cavity operates in the TE/sub 0.11/ mode, whereas the remaining three cavities (buncher, penultimate, and output) operate in the TE/sub 021/ mode, doubling the frequency of the input signal. The electron beam parameters are the following: current of 540 A, voltage of 460 kV, perpendicular-to-parallel velocity ratio of 1.5, and a parallel velocity spread of 6.4%. The output cavity has been simulated as (1) zero-drive unstable with Q-factor of 320 and (2) zero-drive stable with Q-factor of 250. The simulations show that the maximum efficiency in the first case is 37.4%, and in the second one is 34.4%. In both cases, a high gain of 60 dB at a 100-MW output power level can be realized.
机译:提出了一种用于驱动未来线性对撞机的Ku频段17.1 GHz四腔同轴回旋速调管放大器的设计。 X波段输入腔以TE / sub 0.11 /模式工作,而其余三个腔(分束器,倒数第二个和输出腔)以TE / sub 021 /模式工作,从而使输入信号的频率加倍。电子束参数如下:电流为540 A,电压为460 kV,垂直与平行速度比为1.5,平行速度扩展为6.4%。输出腔已被模拟为(1)Q值为320的零驱动不稳定和(2)Q值为250的零驱动稳定。仿真表明,在第一种情况下,最大效率为37.4%,第二个是34.4%。在这两种情况下,都可以在100 MW输出功率水平下实现60 dB的高增益。

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