Large-Area Pixelized Optoelectronic Neuromorphic Devices with Multispectral Light-Modulated Bidirectional Synaptic Circuits

  • Kwon, Sung Min; 
  • Kwak, Jee Young; 
  • Song, Seungho; 
  • Kim, Jeehoon; 
  • Jo, Chanho; 
  • ... Park, Sung Kyu; 
  • 외 5명
Citations

WEB OF SCIENCE

99
Citations

SCOPUS

101

초록

The complete hardware implementation of an optoelectronic neuromorphic computing system is considered as one of the most promising solutions to realize energy-efficient artificial intelligence. Here, a fully light-driven and scalable optoelectronic neuromorphic circuit with metal-chalcogenide/metal-oxide heterostructure phototransistor and photovoltaic divider is proposed. To achieve wavelength-selective neural operation and hardware-based pattern recognition, multispectral light modulated bidirectional synaptic circuits are utilized as an individual pixel for highly accurate and large-area neuromorphic computing system. The wavelength selective control of photo-generated charges at the heterostructure interface enables the bidirectional synaptic modulation behaviors including the excitatory and inhibitory modulations. More importantly, a 7 x 7 neuromorphic pixel circuit array is demonstrated to show the viability of implementing highly accurate hardware-based pattern training. In both the pixel training and pattern recognition simulation, the neuromorphic circuit array with the bidirectional synaptic modulation exhibits lower training errors and higher recognition rates, respectively.

키워드

bidirectional synaptic modulation; heterostructure phototransistors; optoelectronic neuromorphic systems; pattern recognition
제목
Large-Area Pixelized Optoelectronic Neuromorphic Devices with Multispectral Light-Modulated Bidirectional Synaptic Circuits
저자
Kwon, Sung Min; Kwak, Jee Young; Song, Seungho; Kim, Jeehoon; Jo, Chanho; Cho, Sung Soo; Nam, Seung-Ji; Kim, Jaehyun; Park, Gyeong-Su; Kim, Yong-Hoon; Park, Sung Kyu
DOI
10.1002/adma.202105017
발행일
2021-11
유형
Article
저널명
Advanced Materials
권
33
호
45