Hung Yung-Jr, Yin Chuan-Ci, Wu Zon-Ru, Lin Chih-Yueh, Kao Chia-Wei, Kao Tzu-Chieh, Huang Chia-Wei
Opt Lett. 2022 Feb 1;47(3):561-564. doi: 10.1364/OL.448024.
We demonstrate a Si/SiO/SiO-based period-chirped guided mode resonance (GMR) filter to discriminate telecom o-band wavelengths by spatially resolved horizontal movement. Continuously period-chirped silicon gratings were fabricated by using a Lloyd's laser interferometer with a convex mirror. Due to the large waveguide effective index, the GMR filter can be realized with a short grating period, thus enabling a slow grating period transition along the sample position and high optical resolution in wavelength discrimination. Depositing a SiO/SiO stack on top of silicon gratings enables a narrowband GMR filter with a linewidth of 1-1.5 nm over a wavelength range of 1260-1360 nm. By using the chirped GMR filter as a dispersive device, the optical spectra of a near-infrared broadband light source are reconstructed. An optimized aspheric mirror is proposed to further improve the linearity of chirped gratings. Such a period-chirped GMR filter is promising for compact on-chip spectroscopy and sensing applications.
我们展示了一种基于Si/SiO/SiO的周期啁啾导模共振(GMR)滤波器,通过空间分辨水平移动来区分电信O波段波长。利用带有凸面镜的劳埃德激光干涉仪制作了连续周期啁啾的硅光栅。由于波导有效折射率较大,GMR滤波器可以用短光栅周期实现,从而能够沿样品位置实现缓慢的光栅周期过渡,并在波长分辨方面具有高光学分辨率。在硅光栅顶部沉积SiO/SiO叠层可实现窄带GMR滤波器,在1260 - 1360 nm波长范围内线宽为1 - 1.5 nm。通过将啁啾GMR滤波器用作色散器件,重建了近红外宽带光源的光谱。提出了一种优化的非球面镜以进一步提高啁啾光栅的线性度。这种周期啁啾GMR滤波器在紧凑型片上光谱学和传感应用方面具有前景。