Opt Express. 2021 Sep 13;29(19):30655-30665. doi: 10.1364/OE.439390.
Snapshot multispectral imaging (MSI) has been widely employed in the rapid visual inspection by virtues of the non-invasive detection mode and short integration time. As the critical functional elements of snapshot MSI, narrowband, customizable, and pixel-level multispectral filter arrays (MSFAs) that are compatible with imaging sensors are difficult to be efficiently manufactured. Meanwhile, monolithically integrating MSFAs into snapshot multispectral imagers still remains challenging considering the strict alignment precision. Here, we propose a cost-efficient, wafer-level, and customized approach for fabricating transmissive MSFAs based on Fabry-Perot structures, both in the pixel-level and window-tiled configuration, by utilizing the conventional lithography combined with the deposition method. The MSFA chips own a total dimension covering the area of 4.8 mm × 3.6 mm with 4 × 4 bands, possessing the capability to maintain narrow line widths (∼25 nm) across the whole visible frequencies. After the compact integration with the imaging sensor, the MSFAs are validated to be effective in filtering and target identification. Our proposed fabrication method and imaging mode show great potentials to be an alternative to MSFAs production and MSI, by reducing both complexity and cost of manufacturing, while increasing flexibility and customization of imaging system.
快照多光谱成像 (MSI) 凭借其非侵入式检测模式和短积分时间,已广泛应用于快速目视检查。作为快照 MSI 的关键功能元件,与成像传感器兼容的窄带、可定制和像素级多光谱滤光片阵列 (MSFA) 很难高效制造。同时,考虑到严格的对准精度,将 MSFA 单片集成到快照多光谱成像仪中仍然具有挑战性。在这里,我们提出了一种经济高效、晶圆级和定制的方法,用于制造基于法布里-珀罗结构的透射式 MSFA,包括像素级和窗口平铺配置,利用传统的光刻技术结合沉积方法。MSFA 芯片的总尺寸为 4.8 mm×3.6 mm,带有 4×4 个波段,具有在整个可见频率范围内保持窄线宽(约 25 nm)的能力。与成像传感器进行紧凑集成后,MSFA 被证明在滤波和目标识别方面非常有效。我们提出的制造方法和成像模式通过降低制造的复杂性和成本,同时提高成像系统的灵活性和定制性,显示出替代 MSFA 生产和 MSI 的巨大潜力。