Binary Electronic Synapses for Integrating Digital and Neuromorphic Computation in a Single Physical Platform

  • Wu, Chaoxing
  • Zhang, Yongai
  • Zhou, Xiongtu
  • Li, Dianlun
  • Park, Jae Hyeon
  • 외 6명
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초록

As a promising advanced computation technology, the integration of digital computation with neuromorphic computation into a single physical platform holds the advantage of a precise, deterministic, fast data process as well as the advantage of a flexible, paralleled, fault-tolerant data process. Even though two-terminal memristive devices have been respectively proved as leading electronic elements for digital computation and neuromorphic computation, it is difficult to steadily maintain both sudden-state-change and gradual-state-change in a single device due to the entirely different operating mechanisms. In this work, we developed a digital-analog compatible memristive device, namely, binary electronic synapse, through realizing controllable cation drift in a memristive layer. The devices feature nonvolatile binary memory as well as artificial neuromorphic plasticity with high operation endurance. With strong nonlinearity in switching dynamics, binary switching, neuromorphic plasticity, two-dimension information store, and trainable memory can be implemented by a single device.

키워드

binary electronic synapsememristive devicedigital computationneuromorphic computationcation driftSWITCHES
제목
Binary Electronic Synapses for Integrating Digital and Neuromorphic Computation in a Single Physical Platform
저자
Wu, ChaoxingZhang, YongaiZhou, XiongtuLi, DianlunPark, Jae HyeonAn, HaoqunSung, SihyunLin, JintangGuo, TailiangLi, FushanKim, Tae Whan
DOI
10.1021/acsami.0c02145
발행일
2020-04
유형
Article
저널명
ACS Applied Materials and Interfaces
12
14
페이지
17130 ~ 17138