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Millimeter-wave gyroklystron amplifier experiment using a relativistic electron beam

机译:相对论电子束的毫米波回旋速调管放大器实验

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A fundamental-mode TE/sub 111/ degrees two-cavity intense-beam gyroklystron amplifier experiment, operating at an accelerating voltage of 1 MV, is reported. The two cavities that were tested are designed to serve as bunching cavities for a high-power output cavity. The two-cavity amplifier has demonstrated a linear gain of 15 dB and an unsaturated output power of approximately 40 kW, with the intracavity gain and power approximately 4 dB higher. The frequency of the second cavity has been found to track the frequency of the driven cavity over a range of 300 MHz around a center frequency of 35 GHz. Stable amplifier operation was achieved with beam currents as large as 150 A and a velocity pitch ratio of 0.36. The stable operating range was limited by spurious oscillation in the TE/sub 112/ degrees mode. Theoretical calculations indicate that higher gains might be attainable if this mode could be suppressed.
机译:报道了在1 MV的加速电压下运行的基本模式TE / sub 111 /度两腔强光束回旋速调管放大器实验。被测试的两个腔体被设计为用作高功率输出腔体的成束腔体。两腔放大器的线性增益为15 dB,非饱和输出功率约为40 kW,腔内增益和功率约高4 dB。已经发现第二腔的频率在中心频率35 GHz附近的300 MHz范围内跟踪从动腔的频率。束电流高达150 A,速度节距比为0.36,可实现稳定的放大器工作。 TE / sub 112 /度模式下的杂散振荡限制了稳定的工作范围。理论计算表明,如果可以抑制这种模式,则可以获得更高的增益。

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