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The Photoelectric Synaptic Device with Sensing-Memory-Computing Function Regulated by All-Optical Pulse

delete2023-12-17
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PRE
AI
Y
Yongle Zhang
Q
Qianwen Guo
段瑛锋 cover
段瑛锋 (Yingfeng Duan)
杨峰 (Feng Yang)
薛峰 cover
薛峰 (Feng Xue)
M
Mingli Zheng
J
Junmeng Guo
G
Gang Cheng *
Z
Zuliang Du
DOI:10.1002/adfm.202310001delete
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Abstract

Abstract

En 中文
The photoelectric synaptic devices with the bidirectional optical response and multilevel nonvolatile all-optical pulse control are the basis for constructing the sensing-memory-computing hardware network. However, the current all-optical-pulse-regulated photoelectric synaptic devices cannot realize the bidirectional and multistage nonvolatile regulation of photocurrent responsivity under the detection light excitation. Here, p-Si/n-ZnO heterojunction synaptic devices are constructed, and the bidirectional, nonvolatile control of the synaptic device under visible light excitation is realized with up to 60 states of photocurrent responsivity by ultraviolet (UV) and near-infrared (NIR) irradiation. Based on the performance of the synaptic device, the artificial feedback network can be built to realize the classification and recognition of colored handwritten digits. The recognition accuracy for optical handwritten digits at 415, 530, and 970 nm is 78.1 +/- 1.2%, 79.4 +/- 1.9% and 79.0 +/- 1.6%, respectively. Additionally, the 3 x 3 convolution kernel constructed by the synaptic device can realize image-processing functions like mean filtering, Gaussian filtering, and edge enhancement. The development of sensing-storage-computing all-optical control artificial vision hardware networks can be greatly aided by the new approach to bidirectional and multistage nonvolatile all-optical pulse regulation of photoelectric synaptic devices that is proposed in this paper. p-Si/n-ZnO heterojunction synaptic devices are constructed, achieving bidirectional, nonvolatile control of the photocurrent responsivity of synaptic devices under visible light excitation through ultraviolet and near-infrared irradiation. Based on the device's performance, artificial feedback networks for handwritten digit recognition and a 3 x 3 convolution kernel for image preprocessing can be constructed in simulation.image
Keywords:
all-optical pulse-controlled
photoelectric synaptic device
p-Si/n-ZnO heterojunction
sensing-memory-computing function
wide spectrum response characteristic

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

H
henan university
Scholars:
2.3W
Papers: 1.3W
Citations: 20