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Vircator with Electron Beam Premodulation Built Around a High-Current Pulsed-Periodic Accelerator

机译:具有围绕大电流脉冲周期加速器的电子束预调制功能的振动器

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Theoretical, numerical, and experimental studies of a vircator with the premodulation of a dm-wave electron beam are performed. Possible oscillation mechanisms in virtual-cathode systems (modulation of passing current, effect of reflex klystron, and inertial bunching of particles reflected) are analyzed. The microwave efficiency of the vircator using a two-gap electrodynamic system is shown to be significantly higher than that of the vircator with a one-gap system. Based on the results of the numerical experiment, a prototype of a two-stage vircator in the absence of an external magnetic field is designed. In experiments using a high-current pulsed-periodic accelerator, single-mode oscillations with a power of up to 1 GW, a duration of ≈25 ns, and an efficiency of ≈5% are generated in the dm-wave range. The oscillation frequency is demonstrated to be stable during a pulse and from pulse to pulse, which suggests the decisive effect of the electrodynamic system. It is shown that the oscillation frequency can continuously be tuned in a half-power bandwidth of ≈15% by varying the parameters of the resonator.
机译:对带有dm波电子束的预调制器的振动器进行了理论,数值和实验研究。分析了虚拟阴极系统中可能的振荡机制(通过电流的调制,反射速调管的影响以及所反射粒子的惯性聚集)。已显示,使用两间隙电动系统的振动器的微波效率明显高于使用一间隙系统的振动器的微波效率。根据数值实验的结果,设计了没有外部磁场的两阶段振动器的原型。在使用大电流脉冲周期加速器的实验中,在dm波范围内会产生功率高达1 GW,持续时间约25 ns,效率约5%的单模振荡。振荡频率被证明在一个脉冲期间和一个脉冲之间是稳定的,这表明了电动系统的决定性作用。结果表明,通过改变谐振器的参数,可以在≈15%的半功率带宽内连续调节振荡频率。

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