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April 24, 20260 citationsOpen Access

Electric‐Current‐Assisted Nucleation of Zero‐Field Hopfion Rings

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XCXiaowen ChenDSDongsheng SongFRFilipp N. Rybakov

Key Points

  • This research aims to develop a simple method for nucleating magnetic hopfions using electric current.
  • Introduced an electric-current-assisted nucleation protocol independent of sample shape and size.
  • Analyzed the stability of nucleated hopfions in various magnetic fields.
  • Classified hopfions and related structures using a comprehensive homotopy group framework.
  • Nucleated hopfions demonstrated extraordinary stability under both positive and negative magnetic fields.
  • The findings align closely with predictions made by micromagnetic simulations.
  • A new classification system for hopfions, skyrmions, and merons was established.

Abstract

Magnetic hopfions are 3D topological solitons – knotted, vortex-like spin configurations. In chiral magnets, hopfions can appear as isolated structures or they can be linked to skyrmion strings. Previous studies employed a sophisticated protocol and a special sample geometry to nucleate such hopfions linked to one or a few skyrmion strings. Here, we introduce an electric-current-assisted nucleation protocol that is simple and independent of the sample shape and size. The resulting hopfions exhibit extraordinary stability in the presence of both positive and negative magnetic fields, in perfect agreement with micromagnetic simulations. We also present a comprehensive framework for classifying hopfions, skyrmions, and merons by deriving the corresponding homotopy group.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69eb0ac4553a5433e34b4b65https://doi.org/10.34734/fzj-2026-02102
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