神经形态工程学
记忆电阻器
材料科学
计算机科学
突触
突触重量
纳米技术
人工神经网络
电压
电子工程
神经科学
人工智能
电气工程
工程类
生物
作者
Xiaobing Yan,Xu Han,Ziliang Fang,Zhen Zhao,Zixuan Zhang,Jiameng Sun,Yiduo Shao,Yinxing Zhang,Lulu Wang,Shiqing Sun,Zhenqiang Guo,Xiaotong Jia,Yupeng Zhang,Zhiyuan Guan,Tuo Shi
标识
DOI:10.1007/s11467-023-1308-0
摘要
Neuromorphic computing aims to achieve artificial intelligence by mimicking the mechanisms of biological neurons and synapses that make up the human brain. However, the possibility of using one reconfigurable memristor as both artificial neuron and synapse still requires intensive research in detail. In this work, Ag/SrTiO3(STO)/Pt memristor with low operating voltage is manufactured and reconfigurable as both neuron and synapse for neuromorphic computing chip. By modulating the compliance current, two types of resistance switching, volatile and nonvolatile, can be obtained in amorphous STO thin film. This is attributed to the manipulation of the Ag conductive filament. Furthermore, through regulating electrical pulses and designing bionic circuits, the neuronal functions of leaky integrate and fire, as well as synaptic biomimicry with spike-timing-dependent plasticity and paired-pulse facilitation neural regulation, are successfully realized. This study shows that the reconfigurable devices based on STO thin film are promising for the application of neuromorphic computing systems.
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