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February 6, 2026Science Advances1 citationsOpen Access

Photoinduced femtosecond spin-flip assisted by a single-mode linear phonon

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NWNa WuEWEn WangDCDaqiang Chen

Key Points

  • The aim is to explore ultrafast optical manipulation of spin-flip dynamics in two-dimensional ferromagnets.
  • Optical manipulation of spin-flip performed on Fe3GeTe2
  • Utilized varying laser fluence to identify different regimes
  • Analyzed the interactions between spin, electrons, and phonons
  • Achieved spin-flip in 300 femtoseconds
  • Identified three regimes: demagnetization, spin-flip, and spin-melting
  • Observed sign change in Berry curvature, suggesting nontrivial band topology

Abstract

Optical manipulation of spin-flip on a picosecond to femtosecond timescale has long been pursued to innovate next-generation electronic devices. However, understanding the ultrafast spin-electron-lattice coupled dynamics remains challenging, especially when the system is driven far from equilibrium. Here, we demonstrate an ultrafast light-induced spin-flip within 300 fs in Fe 3 GeTe 2 , a prototypical two-dimensional itinerant ferromagnet. Notably, by varying the laser fluence, we identify three distinct regimes that emerge assisted by a photoinduced single linear phonon mode, namely demagnetization, spin-flip, and spin-melting. We resolve the dominant role of displacively excited A 1g phonons, while nonequilibrium electron occupation is essential to break the degeneracy of the spin up and down states and lower the spin-flip energy barrier. Accompanying the spin-flip, we also observe a sign change of the Berry curvature, implying involvement of nontrivial band topology. Our results provide a general guidance for optical manipulation of spin orders, holding promises for advancing future spintronics and information technology.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/698585ea8f7c464f23009badhttps://doi.org/10.1126/sciadv.adv9616
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