Instability towards Staggered Loop Currents in the Three-Orbital Model for Cuprate Superconductors
Abstract
We present evidence for the existence of a spontaneous instability towards an orbital loop-current phase in a multiorbital Hubbard model for the CuO planes in cuprates. Contrary to the previously proposed phase with intra-unit cell currents, the identified instability is towards a staggered pattern of intertwined current loops. The orbitally resolved current pattern thereby shares its staggered character with the proposal of d-density wave order. The current pattern will cause a Fermi surface reconstruction and the opening of a pseudogap. We argue that the pseudogap phase with time-reversal symmetry breaking currents is susceptible to further phase transitions and therefore offers a route to account for axial incommensurate charge order and a polar Kerr effect in underdoped cuprates.
Cite
@article{arxiv.1503.08896,
title = {Instability towards Staggered Loop Currents in the Three-Orbital Model for Cuprate Superconductors},
author = {S. Bulut and Arno P. Kampf and W. A. Atkinson},
journal= {arXiv preprint arXiv:1503.08896},
year = {2015}
}
Comments
8 pages, 5 figures, a new section was added (Sec. VI Concluding Remarks), and the previous version was reformatted (supplementary materials are mostly merged with the body of the manuscript)