English

Where does the spin angular momentum go in laser induced demagnetisation?

Materials Science 2021-09-01 v1

Abstract

The dynamics of ultrafast demagnetisation in 3dd magnets is complicated by the presence of both spin Sˇ{\v S} and orbital Lˇ{\v L} angular momentum, with the microscopic mechanism by which the magnetic moment is redistributed to the lattice, and at what time scales, yet to be resolved. Employing state-of-the-art time dependent density function theory we disentangle the dynamics of these two momenta. Utilising ultra short (5~fs) pulses that separate spin-orbit (SO) and direct optical excitation time scales, we demonstrate a two-step microscopic mechanism: (i) an initial loss of Lˇ{\v L} due to laser excitation, followed post pulse by (ii) an increase of Lˇ{\v L} as Sˇ{\v S} transfers to Lˇ{\v L} during subsequent (>15> 15~fs) SO induced spin-flip demagnetisation. We also show that to see an unambiguous transfer of Sˇ{\v S} to Lˇ{\v L} a short pulse is required.

Keywords

Cite

@article{arxiv.2012.03657,
  title  = {Where does the spin angular momentum go in laser induced demagnetisation?},
  author = {J. K. Dewhurst and S. Shallcross and P. Elliott and S. Eisebitt and C. v. Korff Schmising and Sangeeta Sharma},
  journal= {arXiv preprint arXiv:2012.03657},
  year   = {2021}
}

Comments

5 pages 4 figures

R2 v1 2026-06-23T20:46:47.039Z