In‐Material Self‐Adaptive Dynamic Encoding in FeO <sub>x</sub> Optomemory Device for Real‐Time Analog Signal Processing

J Jie Li G Guangdong Zhou H Haifeng Ling X Xiuxia Wang Y Yue Hu J Jianjun Yuan (College of Artificial Intelligence Chongqing Key Laboratory of Brain‐Inspired Computing and Intelligent Chips Key Laboratory of Luminescence Analysis and Molecular Sensors (Ministry of Education) Southwest University Chongqing China) X Xiaofang Hu (Key Laboratory of Luminescence Analysis and Molecular Sensors, College of Artificial Intelligence, Southwest University 2 , Chongqing,) L Lidan Wang X Xiaozong Huang (Institute of Chip Technology China Electronics Technology Group Corporation (CETC) Chongqing China) B Bai Sun (Frontier Institute of Science and Technology Interdisciplinary Research Center of Frontier science and technology State Key Laboratory for Strength and Vibration of Mechanical Structures Engineering Research Center of Key Materials for Efficient Utilization of Clean Energy of Shaanxi Province Xi'an Key Laboratory of Electronic Devices and Material Chemistry Institute of New Concept Sensors and Molecular Materials Shaanxi Key Laboratory of New Conceptual Sensors and Molecular Materials Xi'an...) J Jia Sun (National Medical Products Administration Key Laboratory for Research and Evaluation of Drug Metabolism and Guangdong Provincial Key Laboratory of New Drug Screening, School of Pharmaceutical Sciences, Southern Medical University) Y Ye Zhou S Shisheng Xiong (School of Information Science and Engineering Fudan University Shanghai China) S Shukai Duan (College of Artificial Intelligence Chongqing Key Laboratory of Brain‐Inspired Computing and Intelligent Chips Key Laboratory of Luminescence Analysis and Molecular Sensors (Ministry of Education) Southwest University Chongqing China)

Abstract

ABSTRACT In‐sensor vision computing system as an emerging edge computing platform shows great potential to process dynamic information. However, it still requires an electric to reset weight, largely limiting its capability in processing complex signals. Here we propose FeO x optomemory that can automatically convert its states from negative photoconductance memory (NPM) to positive photoconductance memory (PPM). The formation of neutral oxygen vacancy ( V o ) from both the photogenerated electron‐based iron reduction process (Fe 3+ to Fe 2+ ) and the photoelectron trapping by charged oxygen vacancy ( V o x+ ) builds the NPM effect under low light dosage illumination. The decrease in V o by the photogenerated hole‐based iron oxidization process (Fe 2+ to Fe 3+ ) and the increase in V o x+ by Joule‐heating assisted photoelectron detrapping from V o sites causes the automatic conversion from the NPM to the PPM when the light illumination exceeds the threshold dosage (0.72 µJ/µm 2 ). Such self‐adaptive conversion from NPM and PPM enables the FeO x optomemory to execute fully optical computing. The NPM effect provides rich echo states for dynamic feature encoding while the PPM initializes the encoded states, thus building a self‐adaptive reservoir computing (RC) system, yielding a recognition accuracy of 97.93%. This work provides an emerging in‐material encoding mechanism for in‐sensor edge computing system.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 04, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (14)

J

Jie Li

G

Guangdong Zhou

H

Haifeng Ling

X

Xiuxia Wang

Y

Yue Hu

J

Jianjun Yuan

College of Artificial Intelligence Chongqing Key Laboratory of Brain‐Inspired Computing and Intelligent Chips Key Laboratory of Luminescence Analysis and Molecular Sensors (Ministry of Education) Southwest University Chongqing China

X

Xiaofang Hu

Key Laboratory of Luminescence Analysis and Molecular Sensors, College of Artificial Intelligence, Southwest University 2 , Chongqing,

L

Lidan Wang

X

Xiaozong Huang

Institute of Chip Technology China Electronics Technology Group Corporation (CETC) Chongqing China

B

Bai Sun

Frontier Institute of Science and Technology Interdisciplinary Research Center of Frontier science and technology State Key Laboratory for Strength and Vibration of Mechanical Structures Engineering Research Center of Key Materials for Efficient Utilization of Clean Energy of Shaanxi Province Xi'an Key Laboratory of Electronic Devices and Material Chemistry Institute of New Concept Sensors and Molecular Materials Shaanxi Key Laboratory of New Conceptual Sensors and Molecular Materials Xi'an...

J

Jia Sun

National Medical Products Administration Key Laboratory for Research and Evaluation of Drug Metabolism and Guangdong Provincial Key Laboratory of New Drug Screening, School of Pharmaceutical Sciences, Southern Medical University

Y

Ye Zhou

S

Shisheng Xiong

School of Information Science and Engineering Fudan University Shanghai China

S

Shukai Duan

College of Artificial Intelligence Chongqing Key Laboratory of Brain‐Inspired Computing and Intelligent Chips Key Laboratory of Luminescence Analysis and Molecular Sensors (Ministry of Education) Southwest University Chongqing China