arXiv · 2504.13269
Novel phenomena in transition-metal oxide thin films and heterostructures with strong correlations and spin-orbit coupling
Abstract
Transition-metal oxides have been a central subject of condensed matter physics for decades. In addition to novel electronic states driven by the influence of strong correlation, relativistic spin-orbit coupling effects have recently attracted much attention for their potential to explore topological phenomena. In this article, we review various experimental and theoretical studies on transition-metal oxides with focus on thin films and heterostructures where their physics is much influenced by correlation effects and spin-orbit coupling. The combination of the heterostructure geometry together with correlation and topology leads to a variety of novel states here reviewed. We also discuss perspectives for future research in this broad promising area.
Explore related subjects
Keep this discovery
Satoshi Okamoto, Narayan Mohanta, Ho Nyung Lee, Adriana Moreo, Elbio Dagotto. 2025-04-17. Novel phenomena in transition-metal oxide thin films and heterostructures with strong correlations and spin-orbit coupling. https://arxiv.org/abs/2504.13269
Cite the original work for its findings. Save a collection to share your selection of sources.