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Investigation of G-band High Power and Broad Bandwidth Extended Interaction Klystron with Rectangular Electron Beam

机译:具有矩形电子束的G波段高功率和宽带宽延伸交互Klystron的研究

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A G-band ladder-type Extended Interaction Klystron (EIK) with rectangular electron beam is designed. The bi-periodic structure with long-slots and short-slots alternatively distributed is adopted to form the multi-gap resonance cavity. The dominant advantage of the bi-periodic structure is the broader operation bandwidth compared with the periodic structure. The another significance of the proposed structure is that the rectangular electron beam with small aspect ratio is used, which will be helpful in decreasing the focusing difficulty of bunched beam compared with the sheet beam, and in increasing the beam current compared with the cylindrical beam. Through the theoretical analysis and optimization, the structure parameters of the resonance cavity operating at π mode along with the good high-frequency properties are obtained. With the 16.5 kV operating voltage and 0.30 A beam current, the output power of 270 W, efficiency of 5.5% and 3dB bandwidth of 670 MHz is achieved. As the beam current increases to 0.50 A, the output power, efficiency and 3dB bandwidth will improve to 1378 W, 16.7% and over 1 GHz, respectively.
机译:设计了具有矩形电子束的G波段梯形型扩展交互klystron(Eik)。采用具有长槽和短槽的双周期性结构,交替地分布以形成多间隙谐振腔。与周期性结构相比,双周期结构的主导优点是更广泛的操作带宽。所提出的结构的另一个意义是使用具有小宽高比的矩形电子束,这将有助于减少与纸张梁相比束缚光束的聚焦难度,以及与圆柱形光束相比的梁电流增加。通过理论分析和优化,获得在π模式下操作的谐振腔的结构参数以及良好的高频特性。采用16.5 kV工作电压和0.30梁电流,实现了270W的输出功率,效率为5.5%,3DB带宽为670 MHz。随着光束电流增加到0.50 A,输出功率,效率和3DB带宽将分别改善为1378W,16.7%和超过1GHz。

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