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Extraordinary Optical Transmission through Wedge-shape metallic slits array embedded with rectangular cavities

机译:通过嵌入矩形腔的楔形金属狭缝阵列的非凡光学传输

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The non-resonantly enhanced optical transmission phenomenon of sub-wavelength metallic slits on a thin film is significant for broadband light integrated devices. In order to improve the EOT characteristics of sub-wavelength metallic slits further more, in this paper, wedge-shape metallic slits array embedded with rectangular cavities structure is proposed and its transmission properties are investigated using the finite element method. The results show that wedge-shape metallic slits array can achieve higher transmission compared with straight slits array embedded with rectangular cavities and the light is strongly localized and enhanced at the slit exits. We describe the phenomenon with a transmission line model. The width of entrance of the slit influences the transmission property: the transmittance can be 94%, after optimizing the structure parameters, with the widths 150nm and 30nm at the entrance and exit of the slit, respectively. The thickness of metal film influences the transmission peak position and transmission rate: when the increase of the thickness of the metal film, the transmittance increases and the transmission peak is red-shift, however, the law of long wavelength range is opposite. In addition, the effects of structural period of wedge-shaped slits embedded with rectangular cavities structure on the transmission property are also studied. These results would be helpful for optical signal transmission and the design of near field optical conductor devices with higher transmission capability.
机译:薄膜上的亚波长金属狭缝的非共振增强的光传输现象对于宽带光集成装置很重要。为了进一步提高子波长金属狭缝的EOT特性,本文提出了嵌入矩形空腔结构的楔形金属狭缝阵列,并使用有限元法研究其传动特性。结果表明,与嵌入矩形空腔的直线缝线相比,楔形金属狭缝阵列可以实现更高的变速器,并且光在狭缝出口处强烈局部局部化并增强。我们描述了传输线模型的现象。狭缝的入口宽度影响传动特性:在优化结构参数之后,透射率可以分别在优化结构参数,宽度150nm和30nm处的狭缝的入口处。金属膜的厚度影响透射峰位置和传输速率:当金属膜的厚度的增加时,透射率增加并且传输峰值是红移,然而,长波长范围的定律相反。此外,还研究了在传动特性上嵌入矩形腔结构的楔形狭缝结构时段的影响。这些结果对具有更高传输能力的光信号传输和近场光学导体装置的设计有所帮助。

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