Kim Cheolsun, Ni Pavel, Lee Kang Ryeol, Lee Heung-No
School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, Gwangju, 61005, South Korea.
SNI Co., Ltd., Seongnam, Gyeonggi, 13509, South Korea.
Sci Rep. 2022 Mar 8;12(1):4053. doi: 10.1038/s41598-022-08037-y.
Multilayer thin film (MTF) filter arrays for computational spectroscopy are fabricated using stencil lithography. The MTF filter array is a 6 × 6 square grid, and 169 identical arrays are fabricated on a single wafer. A computational spectrometer is formed by attaching the MTF filter array on a complementary metal-oxide-semiconductor (CMOS) image sensor. With a single exposure, 36 unique intensities of incident light are collected. The spectrum of the incident light is recovered using collected intensities and numerical optimization techniques. Varied light sources in the wavelength range of 500 to 849 nm are recovered with a spacing of 1 nm. The reconstructed spectra are a good match with the reference spectra, measured by a grating-based spectrometer. We also demonstrate computational pinhole spectral imaging using the MTF filter array. Adapting a spectral scanning method, we collect 36 monochromatic filtered images and reconstructed 350 monochromatic images in the wavelength range of 500 to 849 nm, with a spacing of 1 nm. These computational spectrometers could be useful for various applications that require compact size, high resolution, and wide working range.
用于计算光谱学的多层薄膜(MTF)滤波器阵列是使用模板光刻法制造的。MTF滤波器阵列是一个6×6的正方形网格,在单个晶圆上制造了169个相同的阵列。通过将MTF滤波器阵列附着在互补金属氧化物半导体(CMOS)图像传感器上形成计算光谱仪。通过单次曝光,收集36种独特的入射光强度。利用收集到的强度和数值优化技术恢复入射光的光谱。在500至849纳米波长范围内的各种光源以1纳米的间距被恢复。重建光谱与基于光栅的光谱仪测量的参考光谱非常匹配。我们还展示了使用MTF滤波器阵列的计算针孔光谱成像。采用光谱扫描方法,我们在500至849纳米波长范围内收集了36幅单色滤波图像,并重建了350幅单色图像,间距为1纳米。这些计算光谱仪可用于各种需要紧凑尺寸、高分辨率和宽工作范围的应用。