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首页> 外文期刊>Electron Devices, IEEE Transactions on >Design of a Novel MIG for a 140-GHz 2-kW Confocal Gyrotron Traveling-Wave Tube
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Design of a Novel MIG for a 140-GHz 2-kW Confocal Gyrotron Traveling-Wave Tube

机译:140 GHz 2 kW共焦回旋行波管的新型MIG设计

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摘要

In order to enhance the efficiency of confocal gyrotron traveling-wave tubes (gyro-TWTs), this paper is intended to present a novel triode-type magnetron injection gun for a 140-GHz 2-kW confocal gyro-TWT. This novel gun, which has a pair of sectorial emitters, is expected to obtain an axial velocity spread of 7.83% and a velocity ratio of 1.01 with an anode voltage of 35 kV and a beam current of 2.4 A. The design procedure has been given in detail. Computer simulations have been carried out using 3-D electromagnetic code computer simulation technology particle tracing. The sensitivity analysis has been performed to study the parametric dependence of modulating anode voltage, accelerating anode voltage, and cathode magnetic field on beam qualities. Results show that this novel gun can be operated stably within a certain parametric scope.
机译:为了提高共焦回旋行波管(gyro-TWT)的效率,本文旨在提出一种用于140 GHz 2 kW共焦回旋TWT的新型三极管型磁控管注入枪。这种新颖的枪具有一对扇形发射器,在阳极电压为35 kV,束电流为2.4 A的情况下,预计将获得7.83%的轴向速度分布和1.01的速度比。已经给出了设计步骤详细。已经使用3D电磁代码计算机仿真技术进行了粒子跟踪,从而进行了计算机仿真。进行了灵敏度分析,以研究调制阳极电压,加速阳极电压和阴极磁场对电子束质量的参数依赖性。结果表明,该新型喷枪可以在一定的参数范围内稳定运行。

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