Nanowire-based synaptic devices for neuromorphic computing

Author:

Chen Xue,Chen Bingkun,Zhao Pengfei,Roy Vellaisamy A L,Han Su-Ting,Zhou YeORCID

Abstract

Abstract The traditional von Neumann structure computers cannot meet the demands of high-speed big data processing; therefore, neuromorphic computing has received a lot of interest in recent years. Brain-inspired neuromorphic computing has the advantages of low power consumption, high speed and high accuracy. In human brains, the data transmission and processing are realized through synapses. Artificial synaptic devices can be adopted to mimic the biological synaptic functionalities. Nanowire (NW) is an important building block for nanoelectronics and optoelectronics, and many efforts have been made to promote the application of NW-based synaptic devices for neuromorphic computing. Here, we will introduce the current progress of NW-based synaptic memristors and synaptic transistors. The applications of NW-based synaptic devices for neuromorphic computing will be discussed. The challenges faced by NW-based synaptic devices will be proposed. We hope this perspective will be beneficial for the application of NW-based synaptic devices in neuromorphic systems.

Funder

Guangdong Basic and Applied Basic Research Foundation

Science and Technology Innovation Commission of Shenzhen

NTUT-SZU Joint Research Program

National Natural Science Foundation of China

Publisher

IOP Publishing

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