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Light transmission through metallic slit with a bar

机译:通过带条的金属狭缝透光

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摘要

The transmission characteristics of a metallic slit with a bar are investigated by using the two-dimensional finite difference time-domain method. It is found that the introduction of a bar enriches the transmission spectrum. As the bar locates at the center of the electric (magnetic) field antinodes, the transmission peaks have longer (shorter) wavelengths in comparison with the corresponding resonant peaks of the single slit. It is true for both the fundamental mode and second order mode. The proposed mode in a previous paper Y. Wang, Y. Wang, Y. Zhang, S. Liu, Opt. Express 17 (2009) 5014 can well explain the above phenomenon. The increase in ability to accumulate charge or decrease in the length of current flow dominates when the bar lies at different positions, which results in a redshift or blueshift of transmission peaks. Moreover, it is also found that the transmission spectrum of the studied structure can be tuned by adjusting the length and width of the bar. It is expected that our results may be utilized to control the electromagnetic wave in subwavelength optics.
机译:采用二维有限差分时域方法研究了带棒材的金属狭缝的透射特性.研究发现,条形图的引入丰富了透射频谱。由于棒位于电场(磁)场反节点的中心,因此与单狭缝的相应谐振峰相比,透射峰具有更长(更短)的波长。对于基本模式和二阶模式都是如此。之前的论文[Y. Wang, Y. Wang, Y. Zhang, S. Liu, Opt. Express 17 (2009) 5014]中提出的模式可以很好地解释上述现象。当棒位于不同位置时,累积电荷的能力增加或电流长度的减少占主导地位,这会导致传输峰值的红移或蓝移。此外,还发现所研究结构的透射光谱可以通过调整棒的长度和宽度来调谐。预计我们的结果可用于控制亚波长光学器件中的电磁波。

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