基于非层流电子束的微波源输出谱中的高次谐波(空间电荷横向束和纵向束影响的分析)

Y. Kalinin, A. Starodubov
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引用次数: 0

摘要

目前,现代真空电子器件的实际问题之一是工作频率向毫米波和太赫兹频段移动。在n次谐波下工作可能是提高真空电子器件工作频率的一种可能和众所周知的方法。基于非层流电子束的器件(virator -type Devices)利用了电子束固有的复杂动力学特性,由于设计简单、工作机制易于调节,可以作为紧凑的微波源。本文研究了高次激励对非层流电子束中电流密度横向和纵向分布的依赖关系。我们考虑了两种类型的空间电荷束的空间形式:固体和空心(准空心)。这些空间形式的电子束的傅里叶分析表明,空心(准空心)形式最适合于高次激发。我们还揭示了影响电子束空间形态的几个因素:相当数量的电子速度散射、电子束的会聚、电子束中反射电子的存在、周期性磁场的大小。实验研究是在可拆卸真空装置的帮助下进行的。实验研究表明,在空心(准空心)电子束中存在15次谐波激发(主频率在1ghz附近)。在非相对论性非层流电子束的基础上,提出了几种激发真空电子器件中高次谐波的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Higher Harmonics in the Output Spectrum of Microwave Sources Based on Nonlaminar Electron Beams (Analysis of the Effect of Transverse and Longitudinal Bunches of the Space Charge)
Nowadays one of the actual problems of modern vacuum electronic devices is moving the operating frequencies towards the millimeter-wave and THz regime. Operation at the n-th harmonic could be one of the possible and well-known approaches to increase the operating frequency of vacuum electronic devices. Devices based on the nonlaminar electron beams (vircator-type devices) employ an intrinsic complicated dynamics of the electron beam and may serve as compact microwave sources owing to the simplicity of design and simple tunability of working regimes. In this work, we study the dependence of higher harmonics excitations on the transverse and longitudinal distribution of current density in nonlaminar electron beams. We have considered two types of spatial form of space charge bunches: solid and hollow (quasi-hollow). Fourier-analysis of these spatial forms of electrons bunches has shown that the hollow (quasi-hollow) form is most suitable for higher harmonics excitation. We have also revealed several factors that exert influence on the spatial form of electrons bunches: a considerable amount of electron velocity scatter, a convergence of electron beam, the presence of reflected electrons in the electron beam, a magnitude of the periodic magnetic field. Experimental studies were carried out with the help of a demountable vacuum setup. Experimental studies have shown that there was an excitation of 15-th harmonic (the main frequency was near the 1 GHz) in the case of hollow (quasi-hollow) electron bunches. We have formulated several recommendations for the excitation of higher harmonics in vacuum electronic devices based on the nonrelativistic nonlaminar electron beams.
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