Interaction driven surface Chern insulator in nodal line semimetals
Abstract
Nodal line semimetals are characterized by nontrivial bulk-band crossings, giving rise to almost flat drumhead-like surface states (DSS), which provide an attractive playground where interaction can induce symmetry-broken states and potential emergent phases. Here, we show that electronic interaction causes Stoner ferromagnetic instability in the DSS while the bulk remains non-magnetic, which together with spin-orbit coupling drive the surface states into a 2D Chern insulator. We show that each DSS carries a half-monopole charge, which for systems containing two pieces of DSS yield a net Chern number . We show that this phenomenology is robust against chiral-symmetry breaking, that gives a finite dispersion to the DSS. Our work shows that nodal line semimetals are a promising platform to implement surface Chern insulators and dissipation-less electron transport by exploiting enhanced interaction effects of the DSS.
Keywords
Cite
@article{arxiv.1807.06916,
title = {Interaction driven surface Chern insulator in nodal line semimetals},
author = {Wei Chen and J. L. Lado},
journal= {arXiv preprint arXiv:1807.06916},
year = {2019}
}
Comments
published version, 10 pages including supplemental material