Charge- and pair-density-wave orders in the one-band Hubbard model with dynamical mean field theory
Abstract
We study the charge-density-wave order and its competition with superconductivity in the one-band Hubbard model for high- superconducting cuprates. We use cluster dynamical mean field theory (CDMFT) at . The one-band Hubbard model only contains copper atoms, and a physical charge-density-wave with charge excesses located on the oxygen atoms manifests itself as a bond-density-wave (BDW) within this context. It arises purely out of local correlation effects and also leads to a -wave pair-density-wave in the presence of -wave superconductivity. The -wave BDW is suppressed on increasing and is favored on increasing the magnitude of the second-neighbor hopping . Further, the -wave BDW order is weakened when in competition with superconductivity, as seen in experiments. Additionally it behaves quite differently on varying in the superconducting state compared to the normal state.
Keywords
Cite
@article{arxiv.2008.08661,
title = {Charge- and pair-density-wave orders in the one-band Hubbard model with dynamical mean field theory},
author = {Sidhartha Shankar Dash and David Sénéchal},
journal= {arXiv preprint arXiv:2008.08661},
year = {2021}
}