The dynamics of ultrafast demagnetisation in 3d magnets is complicated by the presence of both spin Sˇ and orbital Lˇ 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 due to laser excitation, followed post pulse by (ii) an increase of Lˇ as Sˇ transfers to Lˇ during subsequent (>15~fs) SO induced spin-flip demagnetisation. We also show that to see an unambiguous transfer of Sˇ to Lˇ a short pulse is required.
@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}
}