Quantum disordered insulating phase in the frustrated cubic-lattice Hubbard model
Abstract
In the quest for quantum spin liquids in three spatial dimensions (3D), we study the half-filled Hubbard model on the simple cubic lattice with hopping processes up to third neighbors. Employing the variational cluster approach (VCA), we determine the zero-temperature phase diagram: In addition to a paramagnetic metal at small interaction strength and various antiferromagnetic insulators at large , we find an intermediate- antiferromagnetic metal. Most interestingly, we also identify a non-magnetic insulating region, extending from intermediate to strong . Using VCA results in the large- limit, we establish the phase diagram of the corresponding -- Heisenberg model. This is qualitatively confirmed - including the non-magnetic region - using spin-wave theory. Further analysis reveals a striking similarity to the behavior of the - square-lattice Heisenberg model, suggesting that the non-magnetic region hosts a 3D spin-liquid phase.
Cite
@article{arxiv.1506.07894,
title = {Quantum disordered insulating phase in the frustrated cubic-lattice Hubbard model},
author = {Manuel Laubach and Darshan G. Joshi and Johannes Reuther and Ronny Thomale and Matthias Vojta and Stephan Rachel},
journal= {arXiv preprint arXiv:1506.07894},
year = {2016}
}
Comments
5 pages, 4 figures; final version incl. discussion about materials