Generation of density modulated electron beam in an open resonator

B. Maly, J. Nation, L. Schachter
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Abstract

The energy carried by density modulated electron beams with low spread in velocity can be converted into high power microwave radiation with high efficiency. The density modulated beam is generated by applying both RF and DC fields. This is possible in an open cavity that consists of a Bragg reflector region. The authors examine the conditions for beam generation taking into account regular field emission (Fowler-Nordheim) and space-charge effects. The concept is demonstrated when a density modulated beam is injected in a tapered traveling wave structure; simulations indicate that the highest efficiency is achieved when in the first 15% of the interaction region the phase velocity of the wave is higher than the average velocity of the electrons.
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开腔中密度调制电子束的产生
低扩散速度的密度调制电子束所携带的能量可以高效率地转化为高功率微波辐射。密度调制光束是由射频场和直流场共同作用产生的。这在由布拉格反射区组成的开腔中是可能的。考虑到规则场发射(Fowler-Nordheim)和空间电荷效应,作者研究了光束产生的条件。当密度调制光束注入锥形行波结构时,证明了这一概念;仿真结果表明,在前15%的相互作用区域,波的相速度高于电子的平均速度时,效率最高。
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