光电探测器
计算机科学
光电二极管
光伏系统
响应度
闪光灯(摄影)
图像传感器
照度
窗口(计算)
暗电流
可扩展性
解码
光电流
机器视觉
可见光通信
计算机硬件
解码方法
光电子学
电子工程
计算机视觉
响应时间
明视
发光二极管
时滞与积分
微控制器
人工智能
通信系统
作者
Genghui Zhang,X. Lv,J I A H U I Wu,Yuhui Jia,Yudi Tu,Hang Zhou,Chuan Liu
出处
期刊:InfoMat
[Wiley]
日期:2026-06-30
摘要
Abstract Biological vision achieves reliable perception across wide illumination ranges through dynamic photoreceptor adaptation. Inspired by this principle, we report a rhodopsin‐mimetic photovoltaic dual‐transistor (PVT 2 ) photosensor cell integrating a quasi‐2D perovskite photodiode with dual IGZO thin‐film transistors. By electrically regulating light‐induced charge accumulation and release, the PVT 2 device enables adaptive operation spanning scotopic and photopic regimes. The device exhibits a responsivity of up to 139 A W –1 , a photo‐to‐dark current ratio exceeding 10 7 , and a tunable recovery time down to 10 −3 s, relaxing the trade‐offs among responsivity, photo‐to‐dark current ratio, and recovery dynamics. At the array level, PVT 2 sensors autonomously maintain high image contrast under fluctuating ambient illumination while suppressing inter‐pixel crosstalk. Beyond imaging, the light‐intensity‐dependent operating window functions as a reconfigurable hardware key, enabling single‐band visible‐light communication with accurate decoding and quantifiable per‐symbol entropy. This work demonstrates a solid‐state strategy for integrating adaptive vision sensing and physical‐layer security, enabling scalable integration for adaptive optoelectronic systems. image
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