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Research progress of Ka band Gyro-TWTs in IECAS

机译:Ka波段陀螺TWT在IECAS中的研究进展

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A high power Gyrotron Traveling-Wave Amplifier(Gyro-TWT) operating in the low-loss TE01 mode has been designed and demonstrated. The gyro-TWT consists of a double-anode magnetron injection gun(MIG), TE01 mode interaction circuit, a 36mm diameter collector, and a three disk sappire output window. A double-anode magnetron injection gun is designed to operate at 70 kV and 10A using the EGUN trajectory code and particle in cell program MAGIC. The electron beam with v⊥/vz =1.0 has a predicated axial velocity spread of 3–5%. The TE01 mode interaction circuit is made up of a section of alternating metal and lossy ceramic (BeO+TiO2) followed by a unloaded, metal-walled output region. The lossy property of the periodically loaded ceramic relieves the worries of the potential Bragg resonance arising from the periodicity of the interaction circuit, bring high attenuation to the potential competing mode, and enhances the stability of a gyro-TWT. The nonlinear self-consistent simulation code evaluated the operating characteristics of the gyro-TWT amplifier. For an axial velocity spread of Δvz/vz=3%, The predicted peak power is 180kW with −3dB bandwidths1.5GHz.
机译:设计并演示了以低损耗TE01模式工作的大功率回旋行波放大器(Gyro-TWT)。陀螺仪TWT由一个双阳极磁控管注枪(MIG),TE01模式交互电路,一个直径为36mm的收集器和一个三盘蓝宝石输出窗口组成。使用EGUN轨迹代码和单元程序MAGIC中的粒子,双阳极磁控管注入枪设计为在70 kV和10A下工作。 v⊥/ vz = 1.0的电子束具有3–5%的预计轴向速度扩展。 TE01模式交互电路由一段交替的金属和有损陶瓷(BeO + TiO2)组成,后面是无负载的金属壁输出区域。周期性加载的陶瓷的有损特性消除了由相互作用电路的周期性引起的潜在布拉格共振的忧虑,给潜在竞争模式带来了高衰减,并增强了陀螺仪TWT的稳定性。非线性自洽仿真代码评估了陀螺仪TWT放大器的工作特性。对于Δvz/ vz = 3%的轴向速度扩展,预测的峰值功率为180kW,-3dB带宽为1.5GHz。

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