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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Plasmonic Bloch–Zener Oscillation and Beam Curling in Metal–Dielectric Waveguide Arrays
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Plasmonic Bloch–Zener Oscillation and Beam Curling in Metal–Dielectric Waveguide Arrays

机译:金属-电介质波导阵列中的等离振Bloch-Zener振荡和电子束弯曲

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摘要

This paper investigates plasmonic Bloch–Zener oscillation and beam curling in metal–dielectric waveguide arrays (MDWAs) using numerical simulations and theoretical analyses. The beam generated by plasmonic Zener tunneling undergoes a plasmonic Bloch oscillation in the second band of MDWAs and becomes curled. Changing the width and the relative-permittivity gradient of the dielectric layers causes this curled beam to move backward, forward, or even unmoved. Increasing the width and the relative-permittivity gradient of the dielectric layers increases the rightward displacement and reduces the leftward displacement. The direction of motion of the curled beam is determined by the net longitudinal displacement.
机译:本文使用数值模拟和理论分析研究了金属-电介质波导阵列(MDWA)中的等离子Bloch-Zener振荡和电子束卷曲。由等离子齐纳隧穿产生的光束在MDWAs的第二个波段中经历了等离子布洛赫振荡,并卷曲。改变介电层的宽度和相对介电常数梯度会导致该弯曲的光束向后,向前甚至不移动。电介质层的宽度和相对介电常数梯度的增加增加了向右的位移,并减小了向左的位移。卷曲光束的运动方向由净纵向位移确定。

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