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Novel concepts of vacuum microelectronic microwave devices with field emitter cathode arrays

机译:具有场发射极阴极阵列的真空微电子微波装置的新概念

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Field emitter arrays (FEA) are promising electron sources for vacuum microelectronic microwave amplifiers and oscillators. In this paper, microelectronic analogs of "classic" microwave devices are considered. Traveling wave klystrons, klystrodes and cross-field amplifiers with FEA are described. Basic output parameters (gain, efficiency, etc.) of these devices are calculated. A model of a self-excited vacuum microtriode oscillator is developed. The oscillator is studied numerically, as well as by experimental investigation of the circuit analog model. Chaotic generation in the oscillator under external harmonic driving is analyzed. The rf interaction with the electron beam modulated by the field emission in a twystrode is investigated using a particle-in-cell code and a one-dimensional nonlinear code. (C) 2002 American Institute of Physics. [References: 31]
机译:场发射器阵列(FEA)是用于真空微电子微波放大器和振荡器的有前途的电子源。在本文中,考虑了“经典”微波设备的微电子类似物。描述了具有FEA的行波速调管,速调管和交叉场放大器。计算这些设备的基本输出参数(增益,效率等)。建立了自激真空微三极管振荡器的模型。对振荡器进行了数值研究,并通过对电路模拟模型的实验研究。分析了外部谐波驱动下振荡器中的混沌产生。使用单元内粒子代码和一维非线性代码研究了在Twystrode中由场发射调制的电子束与rf的相互作用。 (C)2002美国物理研究所。 [参考:31]

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