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Simulations of emission characteristics of a double-gated carbon nanotube field emitter

机译:双门碳纳米管场致发射器发射特性的仿真

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It has been shown that carbon nanotubes exhibit good electron field emission properties, therefore, have potential applications in field emission displays and electron-beam lithography. A focusing gate is typically required to reduce the beam size for high resolution. A two-dimensional, particle-in-cell computer simulation code MAGIC was used in this work to investigate the focusing properties of the emitted electrons from a single closed-capped MWCNT in a double-gated configuration. The work function of MWCNT was taken to be 5 eV in this study. We calculated the effective beam radius at the anode plane using the electron current density as the weighting function. As a result, increasing the magnitude of the focusing voltage would cause the beam size to increase. Meanwhile, the emission current dropped monotonically from 6.85 nA to 5.8 nA as the focusing voltage varied from -60 V to -62 V. We have also varied the CNT height to investigate its effect on the beam spot size . From this study, it is clearly shown that small beam size can be obtained with an optimum focusing voltage. To achieve even smaller beam size, a much shorter MWCNT can be used or more complex multi-focusing gate designs need to be employed.
机译:已经显示出碳纳米管表现出良好的电子场发射特性,因此,在场发射显示器和电子束光刻中具有潜在的应用。通常需要聚焦门以减小光束尺寸以获得高分辨率。在这项工作中使用了二维的单元格中的计算机模拟代码MAGIC,以研究双门控配置中单个封闭的MWCNT发出的电子的聚焦特性。在这项研究中,MWCNT的功函数为5 eV。我们使用电子电流密度作为加权函数,计算了阳极平面上的有效束半径。结果,增加聚焦电压的幅度将导致光束尺寸增加。同时,随着聚焦电压从-60 V变化到-62 V,发射电流从6.85 nA单调下降到5.8 nA。我们还改变了CNT的高度,以研究其对束斑尺寸的影响。从这项研究中可以清楚地看出,在最佳聚焦电压下可以获得较小的光束尺寸。为了获得更小的光束尺寸,可以使用更短的MWCNT,或者需要采用更复杂的多聚焦门设计。

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