Implementation of skyrmion cellular automaton using Brownian motion and magnetic dipole interaction

In this study, we investigated the interaction between skyrmions in Brownian motion at room-temperature. Cells containing two skyrmions were implemented by controlling the magnetic anisotropy in the Ta/CoFeB/Ta/MgO/SiO2 structure. The interaction between skyrmions was investigated by fabricating a c...

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Veröffentlicht in:Applied physics letters 2021-08, Vol.119 (7), Article 072402
Hauptverfasser: Ishikawa, Ryo, Goto, Minori, Nomura, Hikaru, Suzuki, Yoshishige
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Sprache:eng
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Zusammenfassung:In this study, we investigated the interaction between skyrmions in Brownian motion at room-temperature. Cells containing two skyrmions were implemented by controlling the magnetic anisotropy in the Ta/CoFeB/Ta/MgO/SiO2 structure. The interaction between skyrmions was investigated by fabricating a circuit with two cells in close proximity to each other. It was found that the minimum value of the correlation coefficient was −0.234. These results show that the Brownian motion of skyrmions can potentially realize unconventional computing such as stochastic calculations and ultra-low power computing.
ISSN:0003-6951
1077-3118
DOI:10.1063/5.0053797