English

Spin-orbit torque-mediated spin-wave excitation as an alternative paradigm for femtomagnetism

Materials Science 2019-12-05 v1

Abstract

Laser-induced femtosecond demagnetization, femtomagnetism, offers a potential route to develop faster magnetic storage devices. It is generally believed that the traditional spin-wave theory, which is developed for thermally driven slow demagnetization, can not explain this rapid demagnetization by design. Here we show that this traditional spin-wave theory, once augmented by laser-induced spin-orbit torque, provides a highly efficient paradigm for demagnetization, by capturing low-energy spin-wave excitation that is absent in existing mechanisms. Our paradigm is different from existing ones, but does not exclude them. Microscopically, we find that optical spin-orbit torque generates massive spin waves across several hundred lattice sites, collapsing the long-range spin-spin correlation within 20 fs. Our finding does not only explain new experiments, but also establishes an alternative paradigm for femtomagnetism. It is expected to have far-reaching impacts on future research.

Keywords

Cite

@article{arxiv.1912.01736,
  title  = {Spin-orbit torque-mediated spin-wave excitation as an alternative paradigm for femtomagnetism},
  author = {G. P. Zhang and M. Murakami and Y. H. Bai and Thomas F. George and X. S. Wu},
  journal= {arXiv preprint arXiv:1912.01736},
  year   = {2019}
}

Comments

21 pages, 5 figures, 2 tables