Daiki Nishioka
;
Kaoru Shibata
;
Wataru Namiki
;
Kazuya Terabe
;
Takashi Tsuchiya
説明:
(abstract)We analyzed the computational mechanism of redox-type ion-gating reservoirs (Redox-IGRs)—a class of physical reservoir computing (PRC) devices that utilize redox dynamics induced by ion gating for information processing—operated with physical masking (PM), in which a simple triangular drain voltage dynamically modulates the conductance of the device. The periodic drain perturbation enriches the temporal diversity of the conductance response, leading to enhanced nonlinear dynamics. Information-processing-capacity (IPC) analysis revealed that PM markedly increases nonlinear capacity while maintaining linear memory capacity, resulting in a total IPC increase from 11 to 20. This doubling of IPC indicates an expansion of the reservoir’s effective dimensionality and explains the improved performance observed in nonlinear dynamical system prediction tasks. These findings demonstrate that PM effectively enhances the expressive power of Redox-IGRs and provides a simple, general strategy for boosting the high-dimensional dynamics of PRC systems.
権利情報:
キーワード: reservoir computing, neuromorphic computing, iontronics, ion-gating reservoir, information processing capacity
刊行年月日: 2025-11-01
出版者: IOP Publishing
掲載誌:
研究助成金:
原稿種別: 出版者版 (Version of record)
MDR DOI:
公開URL: https://doi.org/10.35848/1347-4065/ae1d84
関連資料:
その他の識別子:
連絡先:
更新時刻: 2025-12-09 16:30:18 +0900
MDRでの公開時刻: 2025-12-09 12:30:30 +0900
| ファイル名 | サイズ | |||
|---|---|---|---|---|
| ファイル名 |
Nishioka_2025_Jpn._J._Appl._Phys._64_11SP25.pdf
(サムネイル)
application/pdf |
サイズ | 1.72MB | 詳細 |
| ファイル名 |
jjapae1d84supp1.pdf
application/pdf |
サイズ | 278KB | 詳細 |