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首页> 外文期刊>Applied Sciences >Current-Fluctuation Mechanism of Field Emitters Using Metallic Single-Walled Carbon Nanotubes with High Crystallinity
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Current-Fluctuation Mechanism of Field Emitters Using Metallic Single-Walled Carbon Nanotubes with High Crystallinity

机译:高结晶度金属单壁碳纳米管的现场发射器电流波动机制

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摘要

Field emitters can be used as a cathode electrode in a cathodoluminescence device, and single-walled carbon nanotubes (SWCNTs) that are synthesized by arc discharge are expected to exhibit good field emission (FE) properties. However, a cathodoluminescence device that uses field emitters radiates rays whose intensity considerably fluctuates at a low frequency, and the radiant fluctuation is caused by FE current fluctuation. To solve this problem, is very important to obtain a stable output for field emitters in a cathodoluminescence device. The authors consider that the electron-emission fluctuation is caused by Fowler?¢????Nordheim electron tunneling and that the electrons in the Fowler?¢????Nordheim regime pass through an inelastic potential barrier. We attempted to develop a theoretical model to analyze the power spectrum of the FE current fluctuation using metallic SWCNTs as field emitters, owing to their electrical conductivity by determining their FE properties. Field emitters that use metallic SWCNTs with high crystallinity were successfully developed to achieve a fluctuating FE current from field emitters at a low frequency by employing inelastic electron tunneling. This paper is the first report of the successful development of an inelastic-electron-tunneling model with a Wentzel?¢????Kramers?¢????Brillouin approximation for metallic SWCNTs based on the evaluation of FE properties.
机译:现场发射器可以用作阴极电极在阴极发光器件中,并且预期通过电弧放电合成的单壁碳纳米管(SWCNTS)表现出良好的场发射(Fe)性能。然而,使用场发射器的阴极发光装置辐射,其强度在低频下显着波动,并且辐射波动是由Fe电流波动引起的。为了解决这个问题,对于在阴极发光装置中获得用于场发射器的稳定输出非常重要。作者认为,电子 - 排放波动是由福勒?¢???? Nordheim电子隧道引起的,并且福勒中的电子是什么?·Nordheim政权通过无弹性潜在的屏障。我们试图制定理论模型,以通过确定其Fe特性来分析使用金属SWCNTS作为场发射器的Fe电流波动的功率谱。成功地开发了使用具有高结晶度的金属SWCNT的现场发射器,以通过采用无弹性电子隧穿以低频从场发射器实现波动的Fe电流。本文是与Wentzel的核心 - 电子隧穿模型成功开发的第一个报告?

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