Tang Tingting, Li Jie, Luo Li, Shen Jian, Li Chaoyang, Qin Jun, Bi Lei, Hou Junyong
Opt Express. 2019 Jun 24;27(13):17638-17647. doi: 10.1364/OE.27.017638.
As a lateral shift of reflected light beam from the optical interface, the Goos-Hänchen (GH) effect led to various practical applications in biosensing and optical field manipulations. Magneto-optical (MO) effect of dielectric or metal may bring flexible modulation for GH effect, which can be regarded as the magneto-optical Goos-Hänchen (MOGH) effect. In this paper, the GH and MOGH effects in a BK7 prism/Fe/Au waveguide enhanced by surface plasmon resonance (SPR) are demonstrated experimentally for the first time. By weak measurement, the GH and MOGH shifts are further amplified to facilitate their applications. By contrast, the results of theory and experiment are basically consistent. The maximum MOGH shift of the proposed BK7/Fe/Au waveguide achieves 120 μm when optimum thicknesses are chosen. As MOGH effect exhibits a higher sensitivity to the refractive index of sample than GH shift, it can be applied in refractive index detection. The demonstrated MOGH effect with advantages of high sensitivity and convenient control opens avenues for future applications with biosensors and functionally optical devices.
作为光从光学界面的横向位移,古斯-汉欣(GH)效应在生物传感和光场操纵等方面有多种实际应用。电介质或金属的磁光(MO)效应可为GH效应带来灵活调制,这可被视为磁光古斯-汉欣(MOGH)效应。本文首次通过实验证明了表面等离子体共振(SPR)增强的BK7棱镜/铁/金波导中的GH效应和MOGH效应。通过弱测量,进一步放大了GH和MOGH位移以促进其应用。相比之下,理论和实验结果基本一致。当选择最佳厚度时,所提出的BK7/铁/金波导的最大MOGH位移达到120微米。由于MOGH效应比GH位移对样品折射率表现出更高的灵敏度,它可应用于折射率检测。所展示的具有高灵敏度和易于控制优点的MOGH效应为生物传感器和功能性光学器件的未来应用开辟了道路。