Shen Fangcheng, Zhou Kaiming, Gordon Neil, Zhang Lin, Shu Xuewen
Opt Express. 2017 Jul 10;25(14):15729-15736. doi: 10.1364/OE.25.015729.
We demonstrate a compact eccentric long period grating with enhanced sensitivity in low refractive index region. With a period designed at 15 µm for coupling light to high order cladding modes, the grating is more sensitive to surrounding refractive index in low refractive index region. The intrinsically low coupling coefficients for those high order cladding modes are significantly improved with the eccentric localized inscription induced by the femtosecond laser. The fabricated grating is compact with a length of 4.05 mm, and exhibits an average sensitivity of ~505 nm/RIU in low refractive index region (1.3328-1.3544). The proposed principle can also work in other refractive index region with a proper choice of the resonant cladding modes.
我们展示了一种在低折射率区域具有增强灵敏度的紧凑型偏心长周期光栅。该光栅周期设计为15 µm,用于将光耦合到高阶包层模,在低折射率区域对周围折射率更为敏感。飞秒激光诱导的偏心局部写入显著提高了这些高阶包层模固有的低耦合系数。所制备的光栅结构紧凑,长度为4.05 mm,在低折射率区域(1.3328 - 1.3544)表现出约505 nm/RIU的平均灵敏度。通过适当选择共振包层模,所提出的原理也可在其他折射率区域发挥作用。