December 2011

Journal

Possible interaction driven topological phases in (111) bilayers of LaNiO3

By:
Yang, Kai-Yu; Zhu, Wenguang ; Xiao, Di ; Okamoto, Satoshi ; Wang, Z.; Ran, Ying
Journal Name:
Physical Review B
Page Number:
201104
Volume:
84
Issue Number:
20
Publication Date:
December 2011
View DOI Listing:
https://doi.org/10.1103/PhysRevB.84.201104

Abstract

We use the variational mean-field approach to systematically study the phase diagram of a bilayer heterostructure of the correlated transition metal oxide LaNiO3, grown along the (111) direction. The Ni3+ ions with d7 (or e1g) configuration form a buckled honeycomb lattice. We show that as a function of the strength of the on-site interactions, various topological phases emerge. In the presence of a reasonable size of the Hund’s coupling, as the correlation is tuned from intermediate to strong, the following sequence of phases is found: (1) a Dirac half-semimetal phase, (2) a quantum anomalous Hall insulator (QAHI) phase with Chern number one, and (3) a ferromagnetic nematic phase breaking the lattice point group symmetry. The spin-orbit couplings and magnetism are both dynamically generated in the QAHI phase.


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