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首页> 外文期刊>Journal of Vacuum Science & Technology. B, Microelectronics and Nanometer Structures >Simulation study of carbon nanotube field emission display with under-gate and planar-gate structures
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Simulation study of carbon nanotube field emission display with under-gate and planar-gate structures

机译:具有底栅和平面栅结构的碳纳米管场发射显示器的仿真研究

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Recently, two new CNTs-based triode structures, i.e., under-gate and planar-gate structures, for field emission display were proposed and exhibited good characteristics. In this paper, we will investigate how the current density distributed on anode plate and how the display's resolution affected by the bias conditions of the emitter and the gate electrode via computer simulation. Our simulation results exhibit that the gate voltage has a strong effect on display's resolution. For the planar triode structure, the good resolution is achieved when the gate voltage is adjusted to converge the electron beams on an anode plate. For the under-gate structure, the display has a good resolution provided that the gate voltage is not too large to pull the electrons striking on other pixels. In general, the under-gate structure has a wider gate-biased operating condition, but the planar triode structure has a higher light efficiency under the same resolution. Due to the lack of field effect in the y-direction, the spot size of the current density on anode plate looks like strips instead of points. And the resolution of the display will be affected by this factor. (C) 2004 American Vacuum Society.
机译:最近,提出了两种用于场发射显示的新的基于CNT的三极管结构,即,底栅和平面栅结构,并表现出良好的特性。在本文中,我们将通过计算机仿真研究阳极板上的电流密度如何分布以及发射器和栅电极的偏置条件如何影响显示器的分辨率。我们的仿真结果表明,栅极电压对显示器的分辨率有很大影响。对于平面三极管结构,当调节栅极电压以将电子束会聚在阳极板上时,可获得良好的分辨率。对于栅极下结构,如果栅极电压不会太大以至于无法吸引电子撞击其他像素,则显示器具有良好的分辨率。通常,下栅结构具有较宽的栅偏置工作条件,但平面三极管结构在相同分辨率下具有较高的光效率。由于在y方向上缺少场效应,因此阳极板上电流密度的点大小看起来像条状而不是点状。并且显示器的分辨率将受此因素影响。 (C)2004年美国真空学会。

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