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Numerical analysis in focusing characteristics of the three-dimensional trapezoidal electrodes for carbon nanotube field emitters

机译:碳纳米管场发射体三维梯形电极聚焦特性的数值分析

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摘要

In this study, the focusing characteristics of three-dimensional trapezoidal focusing electrodes for carbon nanotube field emitters are analyzed by the combination of the finite-difference time-domain and particle-in-cell methods. To investigate the divergences of the electrons, the three-dimensional trajectories of the electron beams are simulated by evaluating the electrons' positions and momentums. The divergence angles of electrons in the emitters with three-dimensional focusing electrodes are proved to be smaller than those with the conventional triode structure or with the planar focusing electrodes. Characteristics of the 4 μm-thick three-dimensional geometries (trapezoidal, rectangular and inversed trapezoidal) are compared. The 1 V biased three-dimensional trapezoidal focusing electrode is optimal in regulating the divergence of the beams and forming uniform electron spots on the anode. The average divergence angle of the electrons is limited to 0.1309 rad on the anode plane while the maximum divergence angle is 0.3236 rad.
机译:在这项研究中,碳纳米管场发射器的三维梯形聚焦电极的聚焦特性是通过有限差分时域方法和细胞内颗粒法相结合来分析的。为了研究电子的发散,通过评估电子的位置和动量来模拟电子束的三维轨迹。事实证明,具有三维聚焦电极的发射器中电子的发散角小于常规三极管结构或平面聚焦电极的电子发散角。比较了4μm厚的三维几何形状(梯形,矩形和倒梯形)的特性。 1 V偏置的三维梯形聚焦电极最适合调节电子束的发散并在阳极上形成均匀的电子斑点。在阳极平面上,电子的平均发散角限制为0.1309 rad,而最大发散角为0.3236 rad。

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