English

$d$-Density Wave (DDW) Scenario Description of the New Hidden Charge Order in Cuprates

Strongly Correlated Electrons 2016-05-03 v3 Superconductivity

Abstract

In this paper, we show that the theory of high TcT_c superconductivity based on a microscopic model with dd-density wave (DDW) scenario in the pseudogap phase is able to reproduce some of the most important features of the recent experimentally discovered hidden charge order in several families of Cuprates. In particular, by computing and comparing energies of charge orders of different modulation directions derived from a full microscopic theory with dd-density wave scenario, the axial charge order ϕX(Y)\phi_{X(Y)} with wavevector Q=(Q0,0)((0,Q0))\mathbf{Q}=(Q_0,0)((0,Q_0)) is shown to be unambiguously energetically more favorable over the diagonal charge order ϕX±Y\phi_{X\pm Y} with wavevector Q=(Q0,±Q0)\mathbf{Q}=(Q_0,\pm Q_0) at least in commensurate limit, to be expected also to hold even to more general incommensurate case, in agreement with experiment. The two types of axial charge order ϕX\phi_X and ϕY\phi_Y are degenerate by symmetry. We find that within the superconducting background, biaxial (checkerboard) charge order is energetically more favorable than uniaxial (stripe) charge order, and therefore checkerboard axial charge order should be the one observed in experiments, assuming a single domain of charge ordered state on each CuO2_2 plane.

Keywords

Cite

@article{arxiv.1406.3585,
  title  = {$d$-Density Wave (DDW) Scenario Description of the New Hidden Charge Order in Cuprates},
  author = {Imam Makhfudz},
  journal= {arXiv preprint arXiv:1406.3585},
  year   = {2016}
}

Comments

To appear in Journal of the Physical Society of Japan (2016)