Structure formation and control of electron beam dynamics in triode systems with virtual cathode

V. Anfinogentov
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Abstract

In recent years the researches of various sources of microwave radiation with supercritical currents are actively investigated. Operation of these devices is based on virtual cathode (VC) formation in the interaction space. VC is the oscillating area with space charge potential close to a potential of an electron source. Appearance of VC results in strong modulation of the arriving electron beam and excitation of high-power oscillations. The design simplicity, ultra high level of radiation power, possibility of frequency tuning with modification of electron beam parameters has attracted significant interest in recent years. In the present work we consider a triode-like vircator. In this system the electron beam injects from a cathode surface, further it passes an accelerating potential and after transmitting through an anode grid, it arrives in equipotential interaction space. One of remarkable features of VC devices is the complex irregular character of output radiation in similar devices. The great success of the nonlinear dynamic systems theory in the recent years is the discovery of a strong connection between dynamical chaos and structure formation. It is very interesting to clarify the connection between the formation of structures in electron beam with VC and its complex dynamics. The understanding of this connection allows us to control generation regimes at the expense of action on electronic structures.
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虚阴极三极管系统电子束动力学的结构形成与控制
近年来,人们对各种超临界流微波辐射源的研究得到了积极的开展。这些器件的工作原理是基于在相互作用空间中形成虚阴极。VC是空间电荷电位接近电子源电位的振荡区域。VC的出现导致了到达电子束的强调制和高功率振荡的激发。由于其设计简单、辐射功率超高、可以通过修改电子束参数进行频率调谐等优点,近年来引起了人们的极大兴趣。在目前的工作中,我们考虑一个三极管状的促动器。在该系统中,电子束从阴极表面注入,经过加速电位,通过阳极栅极,到达等电位相互作用空间。VC器件的一个显著特点是输出辐射在同类器件中具有复杂的不规则性。近年来非线性动力系统理论的巨大成功是发现了动力混沌与结构形成之间的紧密联系。阐明VC在电子束中结构的形成与其复杂动力学之间的联系是很有意义的。对这种联系的理解使我们能够以牺牲对电子结构的作用为代价来控制生成机制。
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