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Evolution of topological skyrmions across the spin reorientation transition in Pt/Co/Ta multilayers

  • Min He
  • , Gang Li
  • , Zhaozhao Zhu
  • , Ying Zhang
  • , Licong Peng
  • , Rui Li
  • , Jianqi Li
  • , Hongxiang Wei
  • , Tongyun Zhao
  • , X. G. Zhang
  • , Shouguo Wang
  • , Shi Zeng Lin
  • , Lin Gu
  • , Guoqiang Yu
  • , J. W. Cai
  • , Bao Gen Shen

Research output: Contribution to journalArticlepeer-review

53 Scopus citations

Abstract

Magnetic skyrmions in multilayers are particularly appealing as next generation memory devices due to their topological compact size, the robustness against external perturbations, the capability of electrical driving and detection, and the compatibility with the existing spintronic technologies. To date, Néel-type skyrmions at room temperature (RT) have been studied mostly in multilayers with easy-axis magnetic anisotropy. Here, we systematically broadened the evolution of magnetic skyrmions with sub-50-nm size in a series of Pt/Co/Ta multilayers where the magnetic anisotropy is tuned continuously from easy axis to easy plane by increasing the ferromagnetic Co layer thickness. The existence of nontrivial skyrmions is identified via the combination of in situ Lorentz transmission electron microscopy (L-TEM) and Hall transport measurements. A high density of magnetic skyrmions over a wide temperature range is observed in the multilayers with easy-plane anisotropy, which will stimulate further exploration for new materials and accelerate the development of skyrmion-based spintronic devices.
Original languageEnglish
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume97
Issue number17
DOIs
StatePublished - May 21 2018

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