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Tunable Fano Resonance and Enhanced Sensing in a Simple Au/TiO2 Hybrid Metasurface

机译:简单Au / TiO2杂化超表面中的可调谐Fano共振和增强的传感

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摘要

We investigate Fano resonances and sensing enhancements in a simple Au/TiO hybrid metasurface through the finite-different time-domain (FDTD) simulation and coupled mode theory (CMT) analysis. The results show that the Fano resonance in the proposed simple metasurface is caused by the destructive interaction between the surface plasmon polaritons (SPPs) and the local surface plasmon resonances (LSPRs), the quality factor and dephasing time for the Fano resonance can be effectively tuned by the thickness of Au and TiO structures, the length of each unit in and directions, as well as the structural defect. In particular, single Fano resonance splits into multiple Fano resonances caused by a stub-shaped defect, and multiple Fano resonances can be tuned by the size and position of the stub-shaped defect. Moreover, we also find that the sensitivity in the Au/TiO hybrid metasurface with the stub-shaped defect can reach up to 330 nm/RIU and 535 nm/RIU at the Fano resonance 1 and Fano resonance 2, which is more than three times as sensitive in the Au/TiO hybrid metasurface without the stub-shaped defect, and also higher than that in the TiO metasurface reported before. These results may provide further understanding of Fano resonances and guidance for designing ultra-high sensitive refractive index sensors.
机译:我们通过有限差分时域(FDTD)模拟和耦合模式理论(CMT)分析来研究简单Au / TiO混合超表面中的Fano共振和传感增强。结果表明,所提出的简单超颖表面中的Fano共振是由表面等离振子极化子(SPPs)与局部表面等离振子共振(LSPR)之间的破坏性相互作用引起的,可以有效地调整Fano共振的品质因数和移相时间取决于金和钛结构的厚度,每个单元的长度和方向以及结构缺陷。尤其是,单个Fano共振分为由残余形缺陷引起的多个Fano共振,并且多个Fano共振可以通过残余形缺陷的大小和位置进行调整。此外,我们还发现,在具有Fano共振1和Fano共振2的情况下,具有短截形缺陷的Au / TiO杂化超表面的灵敏度可以达到330 nm / RIU和535 nm / RIU,是其三倍以上。在没有残端形缺陷的Au / TiO杂化表面中,它的敏感性很高,并且也比以前报道的TiO中表面的敏感性高。这些结果可以提供对Fano共振的进一步理解,并为设计超高灵敏折射率传感器提供指导。

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