A light-switchable polarity retina-inspired phototransistor for adaptive photo-sensing
Abstract
The limited dynamic range and fixed response polarity of conventional photodetectors pose significant challenges for machine vision in real-world, rapidly changing illumination, leading to either blindness in low light or saturation in glare. We present a retina-inspired phototransistor based on a CdS–MoS2 van der Waals heterojunction that exhibits light-intensity-switchable photo-response polarity, enabled by gate-tunable charge recombination/injection dynamics. The device seamlessly integrates optical encryption and adaptive noise filtering in a single platform, achieving a 94.2% digit recognition accuracy under high glare. This work demonstrates a single-device platform that synergistically integrates adaptive perception, secure communication, and neuromorphic preprocessing, offering a compact and energy-efficient hardware solution for next-generation intelligent vision systems in robotics, surveillance, and human–machine interfaces.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (9)
Mengyao Zhang
Yifei Hu
Ying Wang
Leiming Yu
School of Physics, Henan Key Laboratory of Advanced Semiconductor & Functional Device Integration, Henan Normal University 1 , Xinxiang,
Suicai Zhang
School of Physics, Henan Key Laboratory of Advanced Semiconductor & Functional Device Integration, Henan Normal University 1 , Xinxiang,
Xiaohui Song
Junna Zhang
College of Computer and Information Engineering, Henan Normal University 2 , Xinxiang,
Yurong Jiang
Congxin Xia
School of Materials Science and Engineering, Henan Engineering Research Center for Flexible Composite and Intelligent Devices