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Recent Progress on Topological Structures in Ferroic Thin Films and Heterostructures

  • Shanquan Chen
  • , Shuai Yuan
  • , Zhipeng Hou
  • , Yunlong Tang
  • , Jinping Zhang
  • , Tao Wang
  • , Kang Li
  • , Weiwei Zhao*
  • , Xingjun Liu
  • , Lang Chen
  • , Lane W. Martin
  • , Zuhuang Chen*
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • South China Normal University
  • CAS - Institute of Metal Research
  • Harbin Institute of Technology Shenzhen
  • Southern University of Science and Technology
  • University of California at Berkeley
  • Lawrence Berkeley National Laboratory

Research output: Contribution to journalReview articlepeer-review

Abstract

Topological spin/polarization structures in ferroic materials continue to draw great attention as a result of their fascinating physical behaviors and promising applications in the field of high-density nonvolatile memories as well as future energy-efficient nanoelectronic and spintronic devices. Such developments have been made, in part, based on recent advances in theoretical calculations, the synthesis of high-quality thin films, and the characterization of their emergent phenomena and exotic phases. Herein, progress over the last decade in the study of topological structures in ferroic thin films and heterostructures is explored, including the observation of topological structures and control of their structures and emergent physical phenomena through epitaxial strain, layer thickness, electric, magnetic fields, etc. First, the evolution of topological spin structures (e.g., magnetic skyrmions) and associated functionalities (e.g., topological Hall effect) in magnetic thin films and heterostructures is discussed. Then, the exotic polar topologies (e.g., domain walls, closure domains, polar vortices, bubble domains, and polar skyrmions) and their emergent physical properties in ferroelectric oxide films and heterostructures are explored. Finally, a brief overview and prospectus of how the field may evolve in the coming years is provided.

Original languageEnglish
Article number2000857
JournalAdvanced Materials
Volume33
Issue number6
DOIs
StatePublished - 11 Feb 2021
Externally publishedYes

Keywords

  • ferroelectrics
  • heterostructures
  • magnetic materials
  • multiferroics
  • thin films
  • topological structures

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