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220GHz high power terahertz wave generation based on miniaturized vacuum Cerenkov device

机译:基于微型真空切伦科夫器件的220GHz大功率太赫兹波生成

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New micromachining techniques now provide the technology to fabricate vacuum electron devices with dimensions suitable for operation in terahertz region. In this paper, results of theoretical and numerical simulation studies of a MW-class, large diameter terahertz wave generator based on the Cerenkov principle are presented. The device consists of a miniaturized foilless diode as well as an oversized rectangular slow wave structure (SWS) which could support surface wave and provide a strong beam-wave coupling. With the method of Particle-in-cell simulation, we investigated the operating characteristics of a prototype 0.22 THz oscillator. It is found that the steady-state, single-frequency operation in the overmoded situation could be realized by the property of surface wave, and the unique voltage tunable capability proves that the device performs as a forward wave oscillator.
机译:现在,新的微加工技术提供了制造尺寸适合在太赫兹区域操作的真空电子器件的技术。本文介绍了基于切伦科夫原理的MW级大直径太赫兹波发生器的理论和数值模拟研究的结果。该器件由小型化的无箔二极管以及超大矩形慢波结构(SWS)组成,该结构可以支持表面波并提供强的束波耦合。通过粒子模拟的方法,我们研究了原型0.22 THz振荡器的工作特性。研究发现,通过表面波的特性可以实现过调制状态下的稳态单频工作,并且独特的电压可调能力证明该器件可以用作前向波振荡器。

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