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Modulating 3D memristor synapse by analog spiking pulses for bioinspired neuromorphic computing

查看全文 作  者:Qi [1,2]Liu;XuMeng [1,2]Zhang;Qing [1,2]LUO;XiaoLong [1]Zhao;HangBing [1,2]Lv;ShiBing [1,2]Long;Ming [1,2]Liu 高影响力作者 机构地区:[1]Key Laboratory of Microelectronics Device&Integrated Technology,Institute of Microelectronics,Chinese Academy of Sciences,Beijing 100029,China;[2]University of Chinese Academy of Sciences,Beijing 100049,China高影响力机构 出  处:《Science China(Physics,Mechanics & Astronomy)》索引2018年第61卷第8期,共7页高影响力期刊 基  金:supported by the National Natural Science Foundation of China(Grant Nos.61521064,61422407,61474136,61574166,and61522408);the National High Technology Research Development Program(Grant Nos.2017YFB0405603,and 2016YFA0201803);Beijing Training Project for the Leading Talents in S&T(Grant No.ljrc201508);the Opening Project of Key Laboratory of Microelectronics Devices&Integrated Technology,Institute of Microelectronics,the Chinese Academy of Sciences 摘  要:Memristor based artificial synapses have demonstrated great potential for bioinspired neuromorphic computing in recent years.To emulate synaptic functions, such as short-term plasticity and long-term potentiation/depression, square pulses or combined complex pulse groups are applied on the device. However, in biological neuron systems, the action potentials are analog pulses with similar amplitudes. Furthermore, in biological systems, the intensity of the stimulus is coded into the frequency of action potentials to modulate the weight of synapses. Toward this programming method, we applied a series of analog spiking pulses with same peaks on Ru/TiO_x/TiN 3D memristor to emulate synaptic functions, such as long-term potentiation/depression and synaptic saturation. Moreover, we demonstrated the conductance change of the device under different stimulus frequencies of analog spiking pulses and described the statistical results of conductance change value, which shows that the device conductance has a larger change value under a higher spiking frequency with identical pulse number. These results show that the analog spiking pulses can well modulate the memristor-based synaptic weight and have a great potential for bioinspired computing in the future. 关 键 词:模拟 计算 3D 频率调制 生物系统 类似物 编程方法 脉搏
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