English

Density Waves Cause Sub-Gap Structures but no Pseudogap in Superconducting Cuprates

Superconductivity 2017-03-08 v2

Abstract

In scanning tunneling microscopy (STM) conductance curves, the superconducting gap of cuprates is sometimes accompanied by small sub-gap structures at very low energy. This was documented early on near vortex cores and later at zero magnetic field. Using mean-field toy models of coexisting d-wave superconductivity (ddSC), \emph{d}-form factor density wave (ddFF-DW), and extended s-wave pair density wave (ss'PDW), we find agreement with this phenomenon, with ss'PDW playing a critical role. We explore the high variability of the gap structure with changes in band structure and density wave (DW) wave vector, thus explaining why sub-gap structures may not be a universal feature in cuprates. In the absence of nesting, non-superconducting results never show signs of pseudogap, even for large density waves magnitudes, therefore reinforcing the idea of a distinct origin for the pseudogap, beyond mean-field theory. Therefore, we also briefly consider the effect of DWs on a pre-existing pseudogap.

Keywords

Cite

@article{arxiv.1610.01109,
  title  = {Density Waves Cause Sub-Gap Structures but no Pseudogap in Superconducting Cuprates},
  author = {S. Verret and M. Charlebois and D. Sénéchal and A. -M. S. Tremblay},
  journal= {arXiv preprint arXiv:1610.01109},
  year   = {2017}
}

Comments

13 pages, 8 figures

R2 v1 2026-06-22T16:10:29.843Z