Wang Qiao, Yao Haizi, Feng Yefeng, Deng Xiaoqian, Yang Bingwen, Xiong Deping, He Miao, Zhang Weiwei
Opt Express. 2021 Mar 29;29(7):10546-10555. doi: 10.1364/OE.414749.
Herein, we have theoretically investigated the sensing performance-including enormous increase in the sensitivity and figure of merit (FOM)-of a magneto-optical surface plasmon resonance (MOSPR) sensor, which is based on the transverse magneto-optical Kerr effect (T-MOKE) in a ferromagnet coupled with a noble-metal grating. Specifically, we propose to use a CoFeB magnetic slab covered by a subwavelength, periodic gold grating configured as a magnetoplasmonic heterostructure. In such a device, sharp, Fano-like T-MOKE signals of high amplitude can be achieved due to the surface plasmon resonances (SPRs) excited in the presence of the gold grating, especially after optimizing the grating period. Tiny changes in the refractive index of an analyte surrounding the MOSPR sensor can be measured by analyzing the shift in the angle of incidence of the resonance positions of the T-MOKE signals. By calculating these resonance positions, we have demonstrated that it is possible to achieve a considerable sensitivity of 105° RIU and a FOM as high as ∼10. Such a MOSPR sensing system can be exploited in biosensors with high detection limits.
在此,我们从理论上研究了一种基于铁磁体中横向磁光克尔效应(T-MOKE)与贵金属光栅耦合的磁光表面等离子体共振(MOSPR)传感器的传感性能,包括灵敏度和品质因数(FOM)的大幅提高。具体而言,我们建议使用覆盖有亚波长周期性金光栅的CoFeB磁性平板,将其配置为磁等离子体异质结构。在这样的器件中,由于在金光栅存在的情况下激发的表面等离子体共振(SPR),特别是在优化光栅周期之后,可以实现高幅度的尖锐、类法诺T-MOKE信号。通过分析T-MOKE信号共振位置的入射角偏移,可以测量MOSPR传感器周围分析物折射率的微小变化。通过计算这些共振位置,我们证明可以实现105°/RIU的相当高的灵敏度和高达约10的FOM。这种MOSPR传感系统可用于具有高检测限的生物传感器。