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A 35-GHz low-voltage third-harmonic gyrotron with a permanent magnet system

机译:具有永久磁铁系统的35 GHz低压三次谐波回旋管

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A systematic theoretical and experimental study on a 35-GHz 45-kV third-harmonic gyrotron with a permanent magnet system is presented in this paper. A complex cavity with gradual transition and a diode magnetron injection gun (MIG) are employed in the gyrotron. A self-consistent field nonlinear theoretical investigation and numerical simulation for electron beam interaction with RF fields are given. The diode MIG is simulated numerically utilizing our code in detail. The permanent magnet system provided the maximum axial magnetic field of about 4.5 kG in the cavity region of the gyrotron. The Ka band third-harmonic complex cavity gyrotron with a permanent magnet system has been designed, constructed, and tested. A pulse output power of 147.3 kW was obtained at a beam voltage of 45 kV with beam current of 32.2 A, corresponding to an efficiency of 10.2%.
机译:本文对具有永磁系统的35 GHz 45 kV第三谐波回旋管进行了系统的理论和实验研究。回旋加速器中采用了具有逐渐过渡的复杂腔体和二极管磁控管注入枪(MIG)。给出了电子束与射频场相互作用的自洽场非线性理论研究和数值模拟。利用我们的代码对二极管MIG进行了详细的数值模拟。永磁系统在回旋管的空腔区域中提供了大约4.5 kG的最大轴向磁场。具有永久磁铁系统的Ka波段三次谐波复腔回旋管已经过设计,制造和测试。在束电压为45 kV,束电流为32.2 A的条件下,获得147.3 kW的脉冲输出功率,相当于效率10.2%。

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