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Resonant interaction of the electron beam with a synchronous wave in controlled magnetrons for high-current superconducting accelerators

机译:大电流超导加速器中受控磁控管中电子束与同步波的共振相互作用

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A simplified analytical model of the resonant interaction of the beam of Larmor electrons drifting in the crossed constant fields of a magnetron with a synchronous wave providing a phase grouping of the drifting charge was developed to optimize the parameters of an rf resonant injected signal driving the magnetrons for management of phase and power of rf sources with a rate required for superconducting high-current accelerators. The model, which considers the impact of the rf resonant signal injected into the magnetron on the operation of the injection-locked tube, substantiates the recently developed method of fast power control of magnetrons in the range up to 10 dB at the highest generation efficiency, with low noise, precise stability of the carrier frequency, and the possibility of wideband phase control. Experiments with continuous wave 2.45 GHz, 1 kW microwave oven magnetrons have verified the correspondence of the behavior of these tubes to the analytical model. A proof of the principle of the novel method of power control in magnetrons, based on the developed model, was demonstrated in the experiments. The method is attractive for high-current superconducting rf accelerators. This paper also discusses vector methods of power control with the rates required for superconducting accelerators, the impact of the rf resonant signal injected into the magnetron on the rate of phase control of the injection-locked tubes, and a conceptual scheme of the magnetron transmitter with highest efficiency for high-current accelerators.
机译:建立了在磁控管的交叉恒定场中漂移的拉莫尔电子束​​与提供漂移电荷相位分组的同步波的谐振相互作用的简化分析模型,以优化驱动磁控管的射频谐振注入信号的参数以超导大电流加速器所需的速率管理射频电源的相位和功率。该模型考虑了注入磁控管的rf共振信号对注入锁定管工作的影响,该模型证实了最近开发的磁控管快速功率控制方法,该方法可在最高发电效率的情况下达到10 dB的范围,具有低噪声,精确的载波频率稳定性以及宽带相位控制的可能性。用2.45 GHz连续波,1 kW微波炉磁控管进行的实验已验证了这些管的行为与分析模型的对应关系。实验证明了基于开发模型的磁控管功率控制新方法原理的证明。该方法对大电流超导射频加速器具有吸引力。本文还讨论了功率控制的矢量方法,其中包括超导加速器所需的速率,注入到磁控管中的rf共振信号对注入锁定管的相位控制速率的影响以及磁控管发射器的概念方案。大电流加速器的最高效率。

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