English

Large Chiral Orbital Texture and Orbital Edelstein Effect in Co/Al Heterostructure

Materials Science 2024-10-31 v1 Mesoscale and Nanoscale Physics

Abstract

Recent experiments by S. Krishnia et al., Nano Lett. 23, 6785 (2023) reported an unprecedentedly large enhancement of torques upon inserting thin Al layer in Co/Pt heterostructure that suggested the presence of a Rashba-like interaction at the metallic Co/Al interface. Based on first-principles calculations, we reveal the emergence of a large helical orbital texture in reciprocal space at the interfacial Co layer, whose origin is attributed to the orbital Rashba effect due to the formation of the surface states at the Co/Al interface and where spin-orbit coupling is found to produce smaller contributions with a higher-order winding of the orbital momentum. Our results unveil that the orbital texture gives rise to a non-equilibrium orbital accumulation producing large current-induced torques, thus providing an essential theoretical background for the experimental data and advancing the use of orbital transport phenomena in all-metallic magnetic systems with light elements.

Keywords

Cite

@article{arxiv.2410.09957,
  title  = {Large Chiral Orbital Texture and Orbital Edelstein Effect in Co/Al Heterostructure},
  author = {Sergey A. Nikolaev and Mairbek Chshiev and Fatima Ibrahim and Sachin Krishnia and Nicolas Sebe and Jean-Marie George and Vincent Cros and Henri Jaffrès and Albert Fert},
  journal= {arXiv preprint arXiv:2410.09957},
  year   = {2024}
}

Comments

Accepted to ACS Nano Letters