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A Fully-Sealed Carbon-Nanotube Cold-Cathode Terahertz Gyrotron

机译:完全密封的碳纳米管冷阴极太赫兹回旋管

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摘要

Gigahertz to terahertz radiation sources based on cold-cathode vacuum electron technology are pursued, because its unique characteristics of instant switch-on and power saving are important to military and space applications. Gigahertz gyrotron was reported using carbon nanotube (CNT) cold-cathode. It is reported here in first time that a fully-sealed CNT cold-cathode 0.22 THz-gyrotron is realized, typically with output power of 500 mW. To achieve this, we have studied mechanisms responsible for CNTs growth on curved shape metal surface, field emission from the sidewall of a CNT, and crystallized interface junction between CNT and substrate material. We have obtained uniform growth of CNTs on and direct growth from cone-cylinder stainless-steel electrode surface, and field emission from both tips and sidewalls of CNTs. It is essential for the success of a CNT terahertz gyrotron to have such high quality, high emitting performance CNTs. Also, we have developed a magnetic injection electron gun using CNT cold-cathode to exploit the advantages of such a conventional gun design, so that a large area emitting surface is utilized to deliver large current for electron beam. The results indicate that higher output power and higher radiation frequency terahertz gyrotron may be made using CNT cold-cathode electron gun.
机译:追求基于冷阴极真空电子技术的千兆赫至太赫兹辐射源,因为其即时接通和节能的独特特性对军事和太空应用至关重要。报道了使用碳纳米管(CNT)冷阴极的千兆赫兹回旋管。首次报道这里实现了全密封的CNT冷阴极0.22 0.2THz回旋管,通常输出功率为500 mW。为实现此目的,我们研究了导致CNT在弯曲金属表面上生长,从CNT侧壁发出场发射以及CNT与基材之间的结晶界面结的机理。我们已经获得了碳纳米管的均匀生长,并从锥形圆柱不锈钢电极表面直接生长,以及碳纳米管的尖端和侧壁的场发射。拥有如此高品质,高发射性能的CNT对于CNT太赫兹回旋管的成功至关重要。此外,我们已经开发出一种使用CNT冷阴极的磁注入电子枪,以利用这种传统电子枪设计的优点,从而利用大面积的发射表面为电子束输送大电流。结果表明,使用碳纳米管冷阴极电子枪可以制得更高的输出功率和更高的太赫兹回旋管。

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