材料科学
神经形态工程学
突触重量
异质结
光电子学
终端(电信)
数组数据结构
晶体管
计算机科学
生物系统
人工神经网络
人工智能
电气工程
生物
电信
工程类
电压
作者
Xun Han,Yufei Zhang,Zhihao Huo,Xiandi Wang,Guofeng Hu,Zhangsheng Xu,Hui Lu,Qiuchun Lu,Xidi Sun,Li Qiu,Peiguang Yan,Caofeng Pan
标识
DOI:10.1002/aelm.202201068
摘要
Abstract Artificial optoelectronic synapses with flexibly regulated synaptic weight are crucial to the rapidly evolved artificial visual system. Although three‐terminal devices with transistor geometry have exhibited controllable synaptic response through applying electrical pulses on the gate terminal, the complicated device structure limits its integration with array configurations. In this work, a simple two‐terminal optoelectronic synapses array based on the ZnO/Al 2 O 3 /CdS heterojunction with tunable synaptic weight is presented. It can respond to UV and green light stimulation in a neuromorphic manner, allowing the implementation of the basic synaptic function. By introducing the piezo‐phototronic effect, the synaptic weight can be regulated in multilevels, extending the forgetting time by 30.08% and reducing training epochs for image recognition by 36.13%. In addition, the device can extract the target image from massive noisy optical inputs avoiding redundant data memorization. This work provides a novel method to regulate the synaptic weight of the simple two‐terminal device configuration through the piezo‐phototronic effect, showing potential applications for the mimicry of the human visual‐perception system.
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