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Free-standing plasmonic metal-dielectric-metal bandpass filter with high transmission efficiency

机译:高传输效率的独立式等离激元金属-电介质-金属带通滤波器

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摘要

Plasmonic spectrum filtering devices based on metallic nanostructures have attracted wide attention due to their good reliability, ease of fabrication, and wideband tunability. However, the presence of thick substrate significantly limits the structure’s longitudinal size for further optoelectronic integration and reduces the devices’ performance. Here we propose and demonstrate an ultra-thin plasmonic bandpass filter based on free-standing periodic metal-dielectric-metal stack geometry working in the near-infrared wavelength range. The coupling between free-space electromagnetic waves and spatially confined plasmonic modes in the designed structure is systematically investigated. As demonstrated in the calculation and experiment, the free-standing plasmonic filters have more than 90% transmission efficiency and superior angular tolerance. The experimental results are in good agreement with the theoretical calculations. These artificial nanostructured filtering devices may find potential applications in the extremely compact device architectures.
机译:基于金属纳米结构的等离子光谱过滤装置由于其良好的可靠性,易于制造和宽带可调性而备受关注。但是,厚基板的存在极大地限制了结构的纵向尺寸,以进一步实现光电集成,并降低了器件的性能。在这里,我们提出并演示了一种超薄等离子体带通滤波器,该滤波器基于在近红外波长范围内工作的独立式周期性金属-电介质-金属叠层几何结构。系统地研究了设计结构中自由空间电磁波与空间受限等离子体模式之间的耦合。如计算和实验所示,独立式等离子滤波器具有超过90%的传输效率和出色的角度公差。实验结果与理论计算吻合良好。这些人造的纳米结构过滤设备可能会在极其紧凑的设备架构中找到潜在的应用。

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