English

Ultrafast Spin Accumulations Drive Magnetization Reversal in Multilayers

Mesoscale and Nanoscale Physics 2026-02-04 v1 Materials Science

Abstract

Engineering and controlling heat and spin transport on the femtosecond time-scale in spintronic devices opens up new ways to manipulate magnetization with unprecedented speed. Yet the underlying reversal mechanisms remain poorly understood due to the challenges of probing ultrafast, non-equilibrium spin dynamics. In this study, we demonstrate that typical magneto-optical experiments can be leveraged to access the time evolution of the spin accumulation generated within a magnetic multilayer following an ultrafast laser excitation. Furthermore, our analysis shows that the final magnetic state of the free-layer in a spin-valve is mainly dictated by the ultrafast dynamics of the reference-layer magnetization. Our results disentangle magnetization and spin transport dynamics within a multilayer stack and identify demagnetization and remagnetization-driven spin accumulation as the key mechanism for all-optical switching. These findings establish new design principles for ultrafast spintronic devices based on tailored spin current engineering.

Keywords

Cite

@article{arxiv.2508.19675,
  title  = {Ultrafast Spin Accumulations Drive Magnetization Reversal in Multilayers},
  author = {Harjinder Singh and Alberto Anadón and Junta Igarashi and Quentin Remy and Stéphane Mangin and Michel Hehn and Jon Gorchon and Gregory Malinowski},
  journal= {arXiv preprint arXiv:2508.19675},
  year   = {2026}
}

Comments

6 pages, 4 figures

R2 v1 2026-07-01T05:08:03.313Z