English

Light-induced torque in ferromagnetic metals via orbital angular momentum generated by photon-helicity

Materials Science 2025-02-18 v2

Abstract

We investigated photon-helicity-induced magnetization precession in Co1x_{1-x}Ptx_{x} alloy thin films. In addition to field-like torque, attributable to magnetic field generation owing to {\it the inverse Faraday effect}, we observed non-trivial and large damping-like torque which has never been discussed for single ferromagnetic layer. The composition dependence of those two torques is effectively elucidated by a model that considers mutual coupling via spin-orbit interaction between magnetization and the electronic orbital angular momentum generated by photon-helicity. This work significantly enhances our understanding of the physics relevant to the interplay of photon-helicity and magnetization in magnetic metals.

Keywords

Cite

@article{arxiv.2405.07405,
  title  = {Light-induced torque in ferromagnetic metals via orbital angular momentum generated by photon-helicity},
  author = {Koki Nukui and Satoshi Iihama and Kazuaki Ishibashi and Shogo Yamashita and Akimasa Sakuma and Philippe Scheid and Grégory Malinowski and Michel Hehn and Stéphane Mangin and Shigemi Mizukami},
  journal= {arXiv preprint arXiv:2405.07405},
  year   = {2025}
}

Comments

7 pages, 4 figures