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June 3, 2026npj Spintronics0 citationsOpen Access

Laser-induced topological spin switching at room temperature in the van der Waals ferromagnet Fe3GaTe2

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CFC. W. F. FreemanWCWoohyun ChoPKPaul S. Keatley

Key Points

  • The study aims to demonstrate the room-temperature manipulation of topological spin textures in Fe3GaTe2 using laser excitation.
  • Utilized rapid laser-induced heating followed by cooling to access skyrmion bubble states.
  • Performed micromagnetic simulations to analyze the switching mechanism.
  • Nucleation observed at magnetic induction fields as low as 5 mT.
  • Achieved reversible switching between skyrmion bubble state and labyrinth domains with a minimum of 20 laser pulses.
  • Lowered induction field requirement significantly compared to traditional methods, enhancing the feasibility for applications.
  • Thermal cycles induced by the laser were identified as the mechanism driving the spin switching.

Abstract

Abstract We demonstrate room-temperature nucleation and manipulation of topological spin textures in the van der Waals (vdW) ferromagnet Fe 3 GaTe 2 using laser-pulse excitation. Rapid laser-induced heating followed by cooling enables access to the skyrmion bubble state at low fields and drives reversible switching between this state and labyrinth domains. The switching requires a minimum of about 20 pulses, and further reduction of the pulse number is limited by sample degradation at higher fluence. The nucleation occurs at magnetic induction fields as low as 5 mT, which substantially lowers the field requirement compared to slow field-cooling approaches. Micromagnetic simulations attribute this switching to the thermal cycle induced by the laser. Our findings establish vdW ferromagnets as promising candidates for room-temperature, laser-controlled, non-volatile memory storage applications.

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Cite This Study

Freeman et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc49adee9eb8c0dce615ahttps://doi.org/10.1038/s44306-026-00139-x
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