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Operation modes of the relativistic magnetron at millimeter wavelengths

机译:相对论磁控管在毫米波波长下的工作模式

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The operation of millimeter-wave relativistic magnetrons is considered for devices of the traditional and the inverted design. The high-voltage, pulsed devices employ explosive emission of electrons in electric fields about (1÷5)·107 V/m near the emitting surface. The electric parameters like these allow magnetron generation with either polarity of the DC driving pulse, both in the traditional and inverted configuration, thus enabling four combinations of geometry and voltage polarity. The operation modes where the source of electrons is near the slow-wave structure have been studied for the first time.
机译:毫米波相对论磁控管的工作被认为是传统和倒置设计的设备。高压脉冲装置在发射表面附近的(1÷5)·107 V / m的电场中采用电子爆炸性发射。像这样的电参数,无论是传统配置还是反相配置,都可以在直流驱动脉冲的任一极性下产生磁控管,从而实现几何形状和电压极性的四种组合。首次研究了电子源靠近慢波结构的工作模式。

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