Cost-Effective and Fully Hardware-Oriented Reservoir Computing Based on IGZO/HZO Ferroelectric Thin-Film Transistor with Electrically and Optically Distinguishable States
  • Kim, Doohyung
  • Lee, Seungjun
  • Lee, Yoonseok
  • Park, Yongjin
  • Lee, Jungwoo
  • ... Kim, Sungjun
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초록

Hardware-based reservoir computing (RC) systems provide benefits like energy efficiency and effective predictability. The implementation of different switching characteristics for the reservoir and readout layers requires the use of different types of devices or additional processing. However, an RC system with distinguishable switching characteristics obtained by changing stimulation on a single device is not identified yet, but it is appealing in terms of process simplicity and efficient processing costs. This study develops an RC system that uses ferroelectric thin-film transistor (FeTFT) devices with an indium gallium zinc oxide channel and Hf0.5Zr0.5O2 ferroelectric layer for both networks. The nonvolatile FeTFT utilizes the remnant polarization properties of the ferroelectric layer through electrical stimulation, showing stable retention characteristics (104 s) and long-term potentiation/depression. By using optical stimulation, the volatile FeTFT demonstrates short-term characteristics, such as paired-pulse facilitation, and a 4-bit RC system. This proves that it is possible to meet the functional requirements of both the reservoir and readout networks by simply varying the type of stimulation applied to a single FeTFT. Finally, the fully FeTFT-based RC system can recognize digit patterns from the Modified National Institute of Standards and Technology database with a high accuracy of 90.5%. This study demonstrates both the reservoir and readout networks by simply selecting the type of stimulation applied to a ferroelectric thin-film transistor with IGZO and HZO films for hardware-oriented reservoir computing. The ferroelectric thin-film transistor-based RC system can recognize digit patterns from the Modified National Institute of Standards and Technology database with a high accuracy of 90.5%. image

키워드

ferroelectric memoriesferroelectric thin-film transistoroptoelectronic devicesreservoir computingMEMRISTORSSENSORMODEL
제목
Cost-Effective and Fully Hardware-Oriented Reservoir Computing Based on IGZO/HZO Ferroelectric Thin-Film Transistor with Electrically and Optically Distinguishable States
저자
Kim, DoohyungLee, SeungjunLee, YoonseokPark, YongjinLee, JungwooKim, Sungjun
DOI
10.1002/adfm.202409095
발행일
2024-12
유형
Article
저널명
Advanced Materials for Optics and Electronics
34
49