Lu Kaiwei, Huang Beiju, Lv Xiaoqing, Zhang Zan, Ma Zhengtai
Key Laboratory of Optoelectronic Materials and Devices, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.
University of Chinese Academy of Sciences (UCAS), Beijing 100049, China.
Sensors (Basel). 2024 Mar 17;24(6):1929. doi: 10.3390/s24061929.
Silicon photonic-based refractive index sensors are of great value in the detection of gases, biological and chemical substances. Among them, microring resonators are the most promising due to their compact size and narrow Lorentzian-shaped spectrum. The electric field in a subwavelength grating waveguide (SWG) is essentially confined in the low-refractive index dielectric, favoring enhanced analyte-photon interactions, which represents higher sensitivity. However, it is very challenging to further significantly improve the sensitivity of SWG ring resonator refractive index sensors. Here, a hybrid waveguide blocks double slot subwavelength grating microring resonator (HDSSWG-MRR) refractive index sensor operating in a water refractive index environment is proposed. By designing a new waveguide structure, a sensitivity of up to 1005 nm/RIU has been achieved, which is 182 nm/RIU higher than the currently highest sensitivity silicon photonic micro ring refractive index sensor. Meanwhile, utilizing a unique waveguide structure, a Q of 22,429 was achieved and a low limit of detection of 6.86 × 10 RIU was calculated.
基于硅光子的折射率传感器在气体、生物和化学物质检测中具有重要价值。其中,微环谐振器因其尺寸紧凑和洛伦兹形状的窄光谱而最具前景。亚波长光栅波导(SWG)中的电场主要限制在低折射率电介质中,有利于增强分析物与光子的相互作用,这意味着更高的灵敏度。然而,进一步显著提高SWG环形谐振器折射率传感器的灵敏度极具挑战性。在此,提出了一种在水折射率环境中工作的混合波导阻挡双槽亚波长光栅微环谐振器(HDSSWG-MRR)折射率传感器。通过设计一种新的波导结构,实现了高达1005 nm/RIU的灵敏度,比目前灵敏度最高的硅光子微环折射率传感器高出182 nm/RIU。同时,利用独特的波导结构,实现了22429的品质因数,并计算出6.86×10 RIU的低检测限。