Room-Temperature Skyrmions in an Antiferromagnet-Based Heterostructure

  • Guoqiang Yu
  • , Alec Jenkins
  • , Xin Ma
  • , Seyed Armin Razavi
  • , Congli He
  • , Gen Yin
  • , Qiming Shao
  • , Qing Lin He
  • , Hao Wu
  • , Wenjing Li
  • , Wanjun Jiang
  • , Xiufeng Han
  • , Xiaoqin Li
  • , Ania Claire Bleszynski Jayich
  • , Pedram Khalili Amiri
  • , Kang L. Wang

研究成果: Article同行評審

109 引文 斯高帕斯(Scopus)

摘要

Magnetic skyrmions as swirling spin textures with a nontrivial topology have potential applications as magnetic memory and storage devices. Since the initial discovery of skyrmions in non-centrosymmetric B20 materials, the recent effort has focused on exploring room-temperature skyrmions in heavy metal and ferromagnetic heterostructures, a material platform compatible with existing spintronic manufacturing technology. Here, we report the surprising observation that a room-temperature skyrmion phase can be stabilized in an entirely different class of systems based on antiferromagnetic (AFM) metal and ferromagnetic (FM) metal IrMn/CoFeB heterostructures. There are a number of distinct advantages of exploring skyrmions in such heterostructures including zero-field stabilization, tunable antiferromagnetic order, and sizable spin-orbit torque (SOT) for energy-efficient current manipulation. Through direct spatial imaging of individual skyrmions, quantitative evaluation of the interfacial Dzyaloshinskii-Moriya interaction, and demonstration of current-driven skyrmion motion, our findings firmly establish the AFM/FM heterostructures as a promising material platform for exploring skyrmion physics and device applications.

原文English
頁(從 - 到)980-986
頁數7
期刊Nano letters
18
發行號2
DOIs
出版狀態Published - 2018 2月 14

All Science Journal Classification (ASJC) codes

  • 生物工程
  • 一般化學
  • 一般材料科學
  • 凝聚態物理學
  • 機械工業

指紋

深入研究「Room-Temperature Skyrmions in an Antiferromagnet-Based Heterostructure」主題。共同形成了獨特的指紋。

引用此