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Integrated Visual Sensing and Computing via Symmetry-Reconfigurable Photodiodes

Authors: Haodong Chen; Wenjing Yue; Yang Li

DOI: 10.1007/s40843-026-4284-5Status: Verified Translated Edition
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Key Findings in This Report

• • Broadband photosensitivity from 360 nm to 1,550 nm at 115 mW cm-2, enabling multispectral imaging and sensing across visible and infrared bands, which is critical for applications in autonomous navigation and surveillance. • • Fifteen distinct photoresponsivity states per device, providing analog memory and enabling in-sensor computing with high precision, reducing the need for external memory units and lowering power consumption. • • Imaging through visibly non-transparent inked glass at 808 nm, demonstrating information-lossless acquisition in scattering media, which is essential for biomedical imaging and security screening. • • High-accuracy pattern recognition with nearly zero false neuron outputs, as evidenced by distinct current outputs for patterns ├, ┬, ┤, ensuring reliable neuromorphic vision and decision-making in real-time systems.