Wang Tianyu, Liu Siqi, Zhang Jiahang, Xu Liang, Yang Mingyu, Ma Ding, Jiang Sijia, Jiao Qingbin, Tan Xin
Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, Jinlin 130033, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Nanophotonics. 2024 Feb 7;13(4):463-475. doi: 10.1515/nanoph-2023-0840. eCollection 2024 Feb.
The metasurface refractive index sensor has a high degree of tunability and flexibility, providing excellent performance for high precision refractive index sensing applications. The metasurface absorber with metallic structure has been hindered in further sensor applications due to the inherent Ohmic loss of the metallic material. In this study, a dual nanorod metasurface structure based on semiconductor Si was designed, introducing a symmetry-breaking structure to excite dual ultra-narrow q-BIC resonance peaks with Fano line shapes. Both peaks are located in the near-infrared region, and multipole analysis shows that this strong field enhancement effect is induced by a magnetic dipole. Experimental results demonstrate the potential of this sensor to provide dual-channel detection while achieving high sensitivity and high Q-factor. We believe that this device exhibits outstanding performance and high practicality, providing a reference for the development and application of biological and environmental sensors.
超表面折射率传感器具有高度的可调谐性和灵活性,为高精度折射率传感应用提供了优异的性能。具有金属结构的超表面吸收器由于金属材料固有的欧姆损耗,在进一步的传感器应用中受到了阻碍。在本研究中,设计了一种基于半导体硅的双纳米棒超表面结构,引入了一种打破对称性的结构来激发具有法诺线形的双超窄q-BIC共振峰。两个峰均位于近红外区域,多极分析表明这种强场增强效应是由磁偶极子引起的。实验结果证明了该传感器在实现高灵敏度和高品质因数的同时提供双通道检测的潜力。我们相信,该器件具有出色的性能和高度的实用性,为生物和环境传感器的开发与应用提供了参考。