Park Gyeong Cheol, Park Kwangwook
Electronics and Telecommunications Research Institute, Daejeon, 34129, Republic of Korea.
Division of Advanced Materials Engineering, Jeonbuk National University, Jeonju, 54896, Republic of Korea.
Sci Rep. 2021 Oct 1;11(1):19575. doi: 10.1038/s41598-021-98654-w.
Perfect absorption at a resonance wavelength and extremely low absorption at the wavelength range of off-resonance in a one-port optical cavity is required for refractive index (RI) sensing with high signal contrast. Here, we propose and analyze an absorption-enhanced Fabry-Perot (MAFP) cavity based on a critical coupling condition in a near-infrared wavelength range. For a one-port cavity, a thick bottom Au is used as a mirror and an absorber. To achieve the critical coupling condition, a top dielectric metasurface is employed and tailored to balance the radiation coupling and the absorption coupling rates, and the one-port cavity is theoretically analyzed using temporal coupled-mode theory. We investigate two types of MAFP structures for gas and liquid. The gas MAFP cavity shows a sensitivity of ~ 1388 nm/RIU and a full-width at half-maximum of less than 0.7 nm. This MAFP cavity resolves the RI change of 5 × 10 with a reflectance signal margin of 50% and achieves a signal contrast of ~ 100%. The liquid MAFP cavity shows a sensitivity of ~ 996 nm/RIU when RI of liquid changes from 1.30 to 1.38. With tailoring the period of the metasurface maintaining its thickness, a signal contrast of ~ 100% is achieved for each specific RI range.
利用高信号对比度进行折射率(RI)传感时,需要在单端口光学腔的共振波长处实现完美吸收,而在非共振波长范围内实现极低吸收。在此,我们提出并分析了一种基于近红外波长范围内临界耦合条件的吸收增强型法布里 - 珀罗(MAFP)腔。对于单端口腔,厚底部金用作反射镜和吸收体。为实现临界耦合条件,采用并定制顶部介质超表面以平衡辐射耦合和吸收耦合速率,并使用时间耦合模理论对单端口腔进行理论分析。我们研究了用于气体和液体的两种类型的MAFP结构。气体MAFP腔的灵敏度约为1388 nm/RIU,半高宽小于0.7 nm。该MAFP腔以50%的反射率信号裕度分辨出5×10的RI变化,并实现了约100%的信号对比度。当液体的RI从1.30变为1.38时,液体MAFP腔的灵敏度约为996 nm/RIU。通过在保持超表面厚度的情况下调整其周期,在每个特定RI范围内都实现了约100%的信号对比度。