Kim Changhyun, Hong Jongwoo, Jang Junhyeok, Lee Gun-Yeal, Kim Youngjin, Jeong Yoonchan, Lee Byoungho
Department of Electrical and Computer Engineering, Seoul National University, Gwanak-ro 1, Gwanak-Gu, Seoul 08826, Republic of Korea.
Inter-University Semiconductor Research Center, Seoul National University, Gwanak-ro 1, Gwanak-Gu, Seoul 08826, Republic of Korea.
Sci Adv. 2024 May 31;10(22):eadn9000. doi: 10.1126/sciadv.adn9000. Epub 2024 May 29.
Advances in imaging technologies have led to a high demand for ultracompact, high-resolution image sensors. However, color filter-based image sensors, now miniaturized to deep submicron pixel sizes, face challenges such as low signal-to-noise ratio due to fewer photons per pixel and inherent efficiency limitations from color filter arrays. Here, we demonstrate a freeform metasurface color router that achieves ultracompact pixel sizes while overcoming the efficiency limitations of conventional architectures by splitting and focusing visible light instead of filtering. This development is enabled by a fully differentiable topology optimization framework to maximize the use of the design space while ensuring fabrication feasibility and robustness to fabrication errors. The metasurface can distribute an average of 85% of incident visible light according to the Bayer pattern with a pixel size of 0.6 μm. The device and design methodology enable the compact, high-sensitivity, and high-resolution image sensors for various modern technologies and pave the way for the advanced photonic device design.
成像技术的进步引发了对超紧凑、高分辨率图像传感器的高需求。然而,基于彩色滤光片的图像传感器如今已小型化至深亚微米像素尺寸,面临着诸如每个像素光子数量减少导致的低信噪比以及彩色滤光片阵列固有效率限制等挑战。在此,我们展示了一种自由形式的超表面颜色路由器,它在实现超紧凑像素尺寸的同时,通过对可见光进行分光和聚焦而非滤波,克服了传统架构的效率限制。这一进展得益于一个完全可微的拓扑优化框架,该框架在确保制造可行性和对制造误差的鲁棒性的同时,最大限度地利用了设计空间。该超表面能够按照拜耳图案分配平均85%的入射可见光,像素尺寸为0.6μm。该器件和设计方法为各种现代技术实现紧凑、高灵敏度和高分辨率的图像传感器提供了可能,并为先进光子器件设计铺平了道路。