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Double-Slot Hybrid Plasmonic Ring Resonator Used for Optical Sensors and Modulators

机译:用于光学传感器和调制器的双槽混合等离子振铃谐振器

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摘要

An ultra-high sensitivity double-slot hybrid plasmonic (DSHP) ring resonator, used for optical sensors and modulators, is developed. Due to high index contrast, as well as plasmonic enhancement, a considerable part of the optical energy is concentrated in the narrow slots between Si and plasmonic materials (silver is used in this paper), which leads to high sensitivity to the infiltrating materials. By partial opening of the outer plasmonic circular sheet of the DSHP ring, a conventional side-coupled silicon on insulator (SOI) bus waveguide can be used. Experimental results demonstrate ultra-high sensitivity (687.5 nm/RIU) of the developed DSHP ring resonator, which is about five-times higher than for the conventional Si ring with the same geometry. Further discussions show that a very low detection limit (5.37 × 10−6 RIU) can be achieved after loaded Q factor modifications. In addition, the plasmonic metal structures offer also the way to process optical and electronic signals along the same hybrid plasmonic circuits with small capacitance (~0.275 fF) and large electric field, which leads to possible applications in compact high-efficiency electro-optic modulators, where no extra electrodes for electronic signals are required.
机译:开发了一种用于光学传感器和调制器的超高灵敏度双槽混合等离子体激元(DSHP)环形谐振器。由于高折射率对比度以及等离激元增强,相当一部分光能集中在Si和等离激元材料(本文中使用银)之间的狭窄缝隙中,这导致了对渗透材料的高度敏感性。通过部分打开DSHP环的外部等离激元圆片,可以使用传统的侧耦合绝缘体上硅(SOI)总线波导。实验结果表明,已开发的DSHP环形谐振器具有超高灵敏度(687.5 nm / RIU),比具有相同几何形状的常规Si环高出约五倍。进一步的讨论表明,在修改加载的Q因子后,可以实现非常低的检测极限(5.37×10 -6 RIU)。此外,等离子金属结构还提供了沿相同的混合等离子电路以较小的电容(〜0.275 fF)和较大的电场处理光和电子信号的方法,从而可能在紧凑型高效电光调制器中应用,其中不需要用于电子信号的额外电极。

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