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首页> 外文期刊>Physical review letters >Quantum-Mechanical Investigation of Field-Emission Mechanism of a Micrometer-Long Single-Walled Carbon Nanotube
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Quantum-Mechanical Investigation of Field-Emission Mechanism of a Micrometer-Long Single-Walled Carbon Nanotube

机译:微米长单壁碳纳米管场致发射机理的量子力学研究

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摘要

A quantum-mechanical simulation is carried out to investigate the charge distribution and electrostatic potential along a 1 μm long (5,5) single-walled carbon nanotube under realistic field-emission experimental conditions. A single layer of carbon atoms is found sufficient to shield most of the electric field except at the tip where strong field penetration occurs. The penetration leads to a nonlinear decrease of potential barrier for emission, which is equally responsible for the low threshold voltage besides the well-known geometrical field enhancement factor.
机译:在真实的场发射实验条件下,进行了量子力学模拟以研究沿1μm长(5,5)单壁碳纳米管的电荷分布和静电势。发现单层碳原子足以屏蔽大部分电场,除了发生强电场穿透的尖端以外。穿透导致发射势垒的非线性减小,除了众所周知的几何场增强因子外,这同样导致低阈值电压。

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