English

Proximity-induced Rashba spin-orbit interaction in BaMnO$_\text{3}|$KTaO$_\text{3}$ heterostructure for antiferromagnetic spintronics

Materials Science 2025-08-11 v2 Strongly Correlated Electrons

Abstract

Antiferromagnetic spintronics, a promising technology for ultra-fast electronic devices, faces several challenges, including the lack of materials simultaneously hosting robust antiferromagnetism and adequate Rashba-like interaction. We design a heterostructure of BaMnO3_3|KTaO3_3 with the idea of proximity-inducing strong Rashba spin-orbit interaction from KTaO3_3 part to BaMnO3_3 part, where the latter is already a robust antiferromagnet. Within our DFT calculations, the heterostructure reveals BaMnO3_3 bands near the Fermi level with a significant magnetic moment per Mn atom and a decent ordering temperature. Further, the BaMnO3_3 bands in the heterostructure exhibit linear Rashba interaction with a sizable Rashba coefficient, owing to its proximity to KTaO3_3. Our work can motivate future research by demonstrating the road map to proximity-induced Rashba interaction for antiferromagnetic spintronics.

Keywords

Cite

@article{arxiv.2506.01861,
  title  = {Proximity-induced Rashba spin-orbit interaction in BaMnO$_\text{3}|$KTaO$_\text{3}$ heterostructure for antiferromagnetic spintronics},
  author = {Vivek Kumar and Nirmal Ganguli},
  journal= {arXiv preprint arXiv:2506.01861},
  year   = {2025}
}