具有相位反转包络的电子束向电磁波的能量传递

K. Lukin
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引用次数: 0

摘要

在微波真空电子器件中产生电磁(EM)波是由于电子束(EB)相对于电磁场的不稳定性的基本现象。最常见的不稳定性之一与切伦科夫型相互作用有关,这种相互作用发生在EB沿波传播方向移动时,初始速度略高于波相速度。这种不稳定性在行波管、carsintron管和BWO管中得到了充分利用。能量交换的基本物理原理得到了很好的研究。类似(但不完全相同)的机制发生在衍射辐射发生器(DRG)和谐振腔(orotron)中,电子的动能转移到具有周期性结构的开腔(OR)的电磁场中。在这些装置中,能量交换和自振荡可以用EB与OR电磁场的同步空间谐波的相互作用来正式描述,OR电磁场在数学上是一个行波。然而,由于在OR(或任何其他谐振器)中激发的电磁场的物理性质相当不同,人们可能面临定性不同的EB能量转移到电磁场的图景。本文对这种异常现象进行了理论分析。所得结果在实验上得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Transfer from Electron Beam to Electromagnetic Wave having Envelope with Phase Inversion
Generation of electromagnetic (EM) waves in microwave vacuum electron devices takes place due to fundamental phenomena known as instabilities of electron beams (EB) with respect to EM fields. One of the most popular instability is related to Cherenkov type interaction that takes place when EB moves along a wave propagation direction with initial velocity slightly higher than the wave phase velocity. Such instability is exploited in TWT, Carsinotron and BWO tubes. The basic physical principles of energy exchange are well studied. Similar (but not completely the same) mechanism takes place in diffraction radiation generator (DRG) and orotron where kinetic energy of electrons is transferred to EM field of open resonator (OR) with periodic structure. In these devices energy exchange and self-oscillations may be formally described in terms of interaction of EB with synchronous spatial harmonic of EM field of OR, which is mathematically a travelling wave. However, because of rather different physical nature of the EM fields excited in OR (or any other resonators) one may face qualitatively different picture of EB energy transfer to EM field. In the paper such unusual phenomena are considered theoretically. The results obtained have been approved experimentally for DRG.
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