Ultrafast and reliable domain-wall and skyrmion logic in a chirally coupled ferrimagnet
Ultrafast and reliable domain-wall and skyrmion logic in a chirally coupled ferrimagnet
Unlocking the spin degree of freedom in addition to the electron's charge, spin-based logic offers an in-memory computing architecture beyond-CMOS technology. Here, we encode information into chiral spin textures (e.g., chiral domain-wall and skyrmion) and achieve an ultrafast and reliable all-electrical logic by exploiting the Dzyaloshinskii-Moriya interaction-induced chiral coupling. Taking advantage of fast spin dynamics in antiferromagnetically coupled systems, we achieved a fast domain-wall motion passing through the logic gate, exceeding 1 kilometre per second, yielding an operation time of 50 picoseconds for a 50 nanometres-long logic gate. Furthermore, we present a fast logic operation with skyrmion bubbles in a racetrack that exhibits a topologically protected computation scheme. Our work demonstrates a viable approach for advanced microchips with high operation frequency and ultralow power consumption, paving the way for next-generation computing technologies.
Yifei Ma、Dihua Wu、Fengbo Yan、Xiaoxiao Fang、Peixin Qin、Leran Wang、Li Liu、Laichuan Shen、Zhiqi Liu、Wenyun Yang、Jie Zhang、Yan Zhou、Feng Luo、Jinbo Yang、Hyunsoo Yang、Kaiming Cai、Shuai Ning、Zhaochu Luo
计算技术、计算机技术
Yifei Ma,Dihua Wu,Fengbo Yan,Xiaoxiao Fang,Peixin Qin,Leran Wang,Li Liu,Laichuan Shen,Zhiqi Liu,Wenyun Yang,Jie Zhang,Yan Zhou,Feng Luo,Jinbo Yang,Hyunsoo Yang,Kaiming Cai,Shuai Ning,Zhaochu Luo.Ultrafast and reliable domain-wall and skyrmion logic in a chirally coupled ferrimagnet[EB/OL].(2025-07-09)[2025-07-22].https://arxiv.org/abs/2507.07004.点此复制
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