调制(音乐)
光强度
宽带
光学
非线性系统
光电子学
强度调制
雷
光调制器
计算机科学
像素
材料科学
物理
相位调制
声学
量子力学
相位噪声
作者
Dehui� Zhang,Xu Dong,Yuhang Li,Yi Luo,Jingtian Hu,Jingxuan Zhou,Yucheng Zhang,Boxuan Zhou,Peiqi Wang,Xurong Li,Bijie Bai,Huaying Ren,Laiyuan Wang,Ao Zhang,Mona Jarrahi,Yu Huang,Aydogan Özcan,Xiangfeng Duan
标识
DOI:10.1038/s41467-024-46387-5
摘要
Abstract Nonlinear optical processing of ambient natural light is highly desired for computational imaging and sensing. Strong optical nonlinear response under weak broadband incoherent light is essential for this purpose. By merging 2D transparent phototransistors (TPTs) with liquid crystal (LC) modulators, we create an optoelectronic neuron array that allows self-amplitude modulation of spatially incoherent light, achieving a large nonlinear contrast over a broad spectrum at orders-of-magnitude lower intensity than achievable in most optical nonlinear materials. We fabricated a 10,000-pixel array of optoelectronic neurons, and experimentally demonstrated an intelligent imaging system that instantly attenuates intense glares while retaining the weaker-intensity objects captured by a cellphone camera. This intelligent glare-reduction is important for various imaging applications, including autonomous driving, machine vision, and security cameras. The rapid nonlinear processing of incoherent broadband light might also find applications in optical computing, where nonlinear activation functions for ambient light conditions are highly sought.
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