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Writable spin wave nanochannels in an artificial-spin-ice-mediated ferromagnetic thin film

Authors :
Jianhua Li
Wen-Bing Xu
Wen-Cheng Yue
Zixiong Yuan
Tan Gao
Ting-Ting Wang
Zhi-Li Xiao
Yang-Yang Lyu
Chong Li
Chenguang Wang
Fusheng Ma
Sining Dong
Ying Dong
Huabing Wang
Peiheng Wu
Wai-Kwong Kwok
Yong-Lei Wang
Publication Year :
2022
Publisher :
arXiv, 2022.

Abstract

Magnonics, which employs spin-waves to transmit and process information, is a promising venue for low-power data processing. One of the major challenges is the local control of the spin-wave propagation path. Here, we introduce the concept of writable magnonics by taking advantage of the highly flexible reconfigurability and rewritability of artificial spin ice systems. Using micromagnetic simulations, we show that globally switchable spin-wave propagation and the locally writable spin-wave nanochannels can be realized in a ferromagnetic thin film underlying an artificial pinwheel spin ice. The rewritable magnonics enabled by reconfigurable spin wave nanochannels provides a unique setting to design programmable magnonic circuits and logic devices for ultra-low power applications.<br />Comment: To appear in Applied Physics Letters

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....7939c2d81d6b8ad78b0180fdf0e81d39
Full Text :
https://doi.org/10.48550/arxiv.2203.12812