Flexible Photonic Synapses Using Vertical ZnO Nanotubes on Graphene Films

  • Jo, Hyerin; 
  • Ali, Asad; 
  • Oh, Won Suk; 
  • An, Sung Jin; 
  • Yi, Gyu-Chul; 
  • 외 1명
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초록

We report the fabrication of flexible photonic synapses using vertically grown ZnO nanotubes on graphene layers. Position- and morphology-controlled ZnO nanotubes were heteroepitaxially grown on multilayer graphene layers and served as flexible channels for synaptic devices. Current-voltage characterizations under different light illumination conditions, as well as a study of the temperature-dependent transient photocurrent, revealed the origin of persistent photoconductivity of the device. Importantly, the device exhibited excellent synaptic properties upon application of light pulses, such as excitatory post-synaptic currents and paired pulse facilitations. For the long-term plasticity, potentiation-depression characteristics with high linearity were successfully implemented with good reliability. These features were observed even under different bending conditions, confirming the flexibility of the device. A simulation study suggested that the device will exhibit excellent performance when integrated into neural network structures.

키워드

Photonic synapse; ZnO; neuromorphic devices
제목
Flexible Photonic Synapses Using Vertical ZnO Nanotubes on Graphene Films
저자
Jo, Hyerin; Ali, Asad; Oh, Won Suk; An, Sung Jin; Yi, Gyu-Chul; Oh, Hongseok
DOI
10.1109/JSTQE.2023.3345488
발행일
2024-05
유형
Article
저널명
IEEE Journal on Selected Topics in Quantum Electronics
권
30
호
3