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An improved suppression method of the transverse-electromagnetic mode leakage with two reflectors in the triaxial klystron amplifier

机译:三轴速调管放大器中带有两个反射器的横向电磁模式泄漏的改进抑制方法

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Suppression of the transverse-electromagnetic (TEM) mode leakage is crucial in the design of a triaxial klystron amplifier with high gain, because a small microwave leakage from the buncher or the output cavity could overwhelm the input signal with low power. In this paper, a specially designed reflector is proposed to suppress the TEM mode leakage, whose axial electric field is approximately zero at the beam radial position. Theoretical analysis indicates that the reflector introduces little influence on the normal modulation of the beam while keeping a high reflection coefficient. By using two such reflectors with different eigen frequencies located in front of the buncher cavity and the output cavity, respectively, an improved triaxial klystron amplifier is presented. The simulation results show that the reflectors substantially decrease the TEM mode leakage power and achieve very good isolation among the cavities. The improved triaxial klystron amplifier can operate normally with 10's kW microwave injection without self-oscillations.
机译:在具有高增益的三轴速调管放大器的设计中,抑制横向电磁(TEM)模式泄漏至关重要,因为来自集束器或输出腔的微小微波泄漏可能会使低功率的输入信号不堪重负。在本文中,提出了一种专门设计的反射器来抑制TEM模式泄漏,该反射器的轴向电场在光束径向位置处大约为零。理论分析表明,反射器对光束的正常调制几乎没有影响,同时保持较高的反射系数。通过使用分别位于聚束腔和输出腔前面的两个具有不同本征频率的反射器,提出了一种改进的三轴速调管放大器。仿真结果表明,反射器大大降低了TEM模式的泄漏功率,并在型腔之间实现了很好的隔离。改进的三轴速调管放大器可以在注入10 kW的微波的情况下正常工作,而不会产生自激振荡。

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