Electronic structure calculations obtained with an approach with density functional theory with an enhanced local Coulomb interaction, DFT+U, are presented for the relativistic magnetic insulator Sr2IrO4. The results are in accordance with experiments with a band gap and a small moment anti-ferromagnetic ground state. This solution is thereafter thoroughly analyzed in terms of Landau theory where it is found that the ordered magnetic moments only form a secondary order parameter while the primary order parameter is a higher order magnetic multipole of rank five. It is further observed that the electronic structure in the presence of this order parameter is related to the earlier proposed jeff=1/2 model, but in contrast to that model the present picture can naturally explain the small magnitude of the ordered magnetic moments.
@article{arxiv.1312.5550,
title = {Non-trivial order parameter in Sr$_{2}$IrO$_{4}$},
author = {Shreemoyee Ganguly and Oscar Granas and Lars Nordstrom},
journal= {arXiv preprint arXiv:1312.5550},
year = {2013}
}