Unidirectional charge correlations in hole-doped cuprates
Abstract
We examine charge correlations and instabilities in the pseudogap phase of high- cuprates modeled by -density wave ordering. The latter has a gap symmetry similar to the one observed in the -wave superconductor. We use - model to describe the charge correlations in the presence of electron-phonon interaction. Our finding suggest that the charge instability in the normal state is dominating at an incommensurate wavevector along (1, 1) instead of (1, 0) for a realistic interaction parameter. The dominance at the diagonal wavevector is further enhanced if the coupling between electron and bond-buckling phonon is incorporated. On the other hand, a dominating charge-density correlation develops along (1, 0) at an incommensurate wavevector in the -density wave ordered state, which shows a qualitative agreement with the experiments. The correlation becomes robust only in the presence of phonon.
Cite
@article{arxiv.2310.09816,
title = {Unidirectional charge correlations in hole-doped cuprates},
author = {Dheeraj Kumar Singh and Yunkyu Bang},
journal= {arXiv preprint arXiv:2310.09816},
year = {2023}
}
Comments
7 pages, 8 figures