Sahani Pratyasha, Nabana Shiori, Okatani Taiyu, Inomata Naoki, Kanamori Yoshiaki
Appl Opt. 2024 May 1;63(13):3537-3546. doi: 10.1364/AO.519521.
A miniature low-cost pixelated gradient thickness optical filter is proposed to achieve spectroscopy in the visible wavelength range. The optical filter consists of a two-dimensional array of metal-dielectric-metal thin films arranged in Fabry-Pérot filter configurations with discretely varying cavity thicknesses. The wavelength-selective characterization of each filter is performed by measuring the transmittance over the visible wavelength range. The pixelated gradient thickness filter is equipped with a CMOS image sensor, and its performance as a spectroscopic module is evaluated by illuminating different monochromatic wavelengths on it. The target spectra are successfully reconstructed from the output signals recorded in the sensor from the respective pixelated gradient thickness filters. The technological competence of the proposed filter will enable its use in handheld devices to widen its application range in day-to-day life.
提出了一种微型低成本像素化渐变厚度光学滤波器,以实现可见波长范围内的光谱分析。该光学滤波器由二维金属-电介质-金属薄膜阵列组成,这些薄膜以法布里-珀罗滤波器配置排列,腔厚度离散变化。通过测量可见波长范围内的透过率来对每个滤波器进行波长选择性表征。像素化渐变厚度滤波器配备有CMOS图像传感器,通过在其上照射不同的单色波长来评估其作为光谱模块的性能。从各个像素化渐变厚度滤波器在传感器中记录的输出信号成功重建了目标光谱。所提出滤波器的技术能力将使其能够用于手持设备,从而扩大其在日常生活中的应用范围。