Hao Yazheng, Yang Rui
Opt Lett. 2024 Oct 15;49(20):5819-5822. doi: 10.1364/OL.541049.
We demonstrate an all-dielectric tetramer metasurface that achieves high-precision refractive index sensing through the excitation of toroidal dipole, magnetic dipole, and electric quadrupole modes, driven by bound states in the continuum (BIC). The metasurface exhibits exceptional performance, with a quality factor of 4.65 × 10, a sensitivity parameter of 649 nm/RIU, and a figure of merit of 1.51 × 10 RIU, achieved by optimizing symmetry and lattice perturbations in periodic silicon tetramer ellipsoidal nanodisks on a SiO substrate. Additionally, the sensor effectively distinguishes analytes with extinction coefficient differences as small as 0.01 through enhanced broadband absorption. This innovation demonstrates substantial potential for label-free sensing applications in microfluidic chip integration.
我们展示了一种全介质四聚体超表面,它通过连续统中的束缚态(BIC)激发环形偶极子、磁偶极子和电四极子模式,实现了高精度折射率传感。通过优化SiO衬底上周期性硅四聚体椭球形纳米盘的对称性和晶格微扰,该超表面表现出卓越的性能,品质因数为4.65×10,灵敏度参数为649 nm/RIU,优值为1.51×10 RIU。此外,该传感器通过增强宽带吸收,能够有效区分消光系数差异低至0.01的分析物。这一创新展示了在微流控芯片集成中无标记传感应用的巨大潜力。