English

Coupling charge and topological reconstructions at polar oxide interfaces

Strongly Correlated Electrons 2021-09-21 v1 Materials Science

Abstract

In oxide heterostructures, different materials are integrated into a single artificial crystal, resulting in a breaking of inversion-symmetry across the heterointerfaces. A notable example is the interface between polar and non-polar materials, where valence discontinuities lead to otherwise inaccessible charge and spin states. This approach paved the way to the discovery of numerous unconventional properties absent in the bulk constituents. However, control of the geometric structure of the electronic wavefunctions in correlated oxides remains an open challenge. Here, we create heterostructures consisting of ultrathin SrRuO3_3, an itinerant ferromagnet hosting momentum-space sources of Berry curvature, and LaAlO3_3, a polar wide-bandgap insulator. Transmission electron microscopy reveals an atomically sharp LaO/RuO2_2/SrO interface configuration, leading to excess charge being pinned near the LaAlO3_3/SrRuO3_3 interface. We demonstrate through magneto-optical characterization, theoretical calculations and transport measurements that the real-space charge reconstruction modifies the momentum-space Berry curvature in SrRuO3_3, driving a reorganization of the topological charges in the band structure. Our results illustrate how the topological and magnetic features of oxides can be manipulated by engineering charge discontinuities at oxide interfaces.

Keywords

Cite

@article{arxiv.2107.03359,
  title  = {Coupling charge and topological reconstructions at polar oxide interfaces},
  author = {T. C. van Thiel and W. Brzezicki and C. Autieri and J. R. Hortensius and D. Afanasiev and N. Gauquelin and D. Jannis and N. Janssen and D. J. Groenendijk and J. Fatermans and S. van Aert and J. Verbeeck and M. Cuoco and A. D. Caviglia},
  journal= {arXiv preprint arXiv:2107.03359},
  year   = {2021}
}

Comments

5 pages main text (4 figures), 29 pages of supplementary information

R2 v1 2026-06-24T03:58:27.262Z