English

Modification of structural disorder by hydrostatic-pressure in superconducting YBa$_{2}$Cu$_{3}$O$_{6.73}$ cuprate

Superconductivity 2018-05-14 v2 Strongly Correlated Electrons

Abstract

Compelling efforts to improve the critical temperature (TcT_{c}) of superconductors have been made through high-pressure application. Understanding the underlying mechanism behind such improvements is critically important, however, much remains unclear. Here we studied ortho-III YBa2_{2}Cu3_{3}O6.73_{6.73} (YBCO) using x-ray scattering under hydrostatic-pressure (HP) up to ~6.0 GPa. We found the reinforced oxygen order (OO) of YBCO under HP, revealing an oxygen rearrangement in the Cu-O layer, which evidently shows the charge transfer phenomenon between the CuO2_{2} plane and Cu-O layer. Concurrently, we also observed no disorder-pinned charge density wave (CDW) signature in CuO2_{2} plane under HP. This indicates that the oxygen rearrangement modifies the quenched disorder state in the CuO2_{2} plane. Using these results, we appropriately explain why pressure-condition can achieve higher TcT_{c} compared with the optimal TcT_{c} under ambient pressure in YBa2_{2}Cu3_{3}O6+x_{6+x}. As an implication of these results, finally, we have discussed that the change in disorder could make it easier for YBa2_{2}Cu3_{3}O6+x_{6+x} to undergo a transition to the nematic order under an external magnetic field.

Keywords

Cite

@article{arxiv.1710.02769,
  title  = {Modification of structural disorder by hydrostatic-pressure in superconducting YBa$_{2}$Cu$_{3}$O$_{6.73}$ cuprate},
  author = {H. Huang and H. Jang and M. Fujita and T. Nishizaki and Y. Lin and J. Wang and J. Ying and J. S. Smith and C. Kenney-Benson and G. Shen and W. Mao and C. -C. Kao and Y. -J. Liu and J. -S. Lee},
  journal= {arXiv preprint arXiv:1710.02769},
  year   = {2018}
}

Comments

24 pages, 6 figures