Hong Jongwoo, Son Hyunwoo, Kim Changhyun, Mun Sang-Eun, Sung Jangwoon, Lee Byoungho
Opt Express. 2021 Feb 1;29(3):3643-3658. doi: 10.1364/OE.415874.
Metasurface color filters (MCFs) have attracted considerable attention thanks to their compactness and functionality as a candidate of an optical element in a miniaturized image sensor. However, conventional dielectric and plasmonic MCFs that have focused on color purity and efficiency cannot avoid reflection in principle, which degrades image quality by optical flare. Here, we introduce absorptive-type MCFs through truncated-cone hyperbolic metamaterial absorbers. By applying a particle swarm optimization method to design multiple parameters simultaneously, the proposed MCF is theoretically and numerically demonstrated in perceptive color on CIELAB and CIEDE2000 with suppressed-reflection. Then, a color filter array is numerically proven in 255 nm of sub-pixel pitch.
超表面滤色器(MCFs)作为小型化图像传感器中光学元件的候选者,因其紧凑性和功能性而备受关注。然而,传统的介电和等离子体MCFs主要关注颜色纯度和效率,原则上无法避免反射,这会因光学耀斑而降低图像质量。在此,我们通过截顶圆锥双曲线超材料吸收体引入吸收型MCFs。通过应用粒子群优化方法同时设计多个参数,所提出的MCF在CIELAB和CIEDE2000上的感知颜色方面进行了理论和数值验证,具有抑制反射的特性。然后,在255 nm的子像素间距下对滤色器阵列进行了数值验证。