Visualizing electronic segregation in lightly-doped Ca$_{2-x}$Na$_x$CuO$_2$Cl$_2$

ORAL

Abstract

We report spectroscopic imaging on evolution of the electronic state in a lightly-doped cuprate superconductor Ca$_{2-x}$Na$_x$CuO$_2$Cl$_2$ across the metal-insulator critical doping. We find nm-scale electronic segregation between regions breaking and showing the lattice symmetry. The former shows C$_2$ symmetry characterized by the unidirectional nano-domains and the V-shaped pseudogap found in superconducting samples [1] while the latter shows C$_4$ symmetry and wider U-shaped gap prominent in non-superconducting samples. This indicates that the local symmetry breaking is inherent in the electronic states created inside the Mott gap by hole doping. We also discuss spectra in C$_2$/C$_4$ domains and superconducting/insulating samples. \par ~ \par \noindent [1] Y. Kohsaka et al., Science 315, 1380 (2007), Nature 454, 1072 (2008).

Authors

  • Yuhki Kohsaka

    • RIKEN
  • T. Hanaguri

    • RIKEN
  • Masaki Azuma

    • Kyoto Univ.
    • Institute for Chemical Research, Kyoto University
  • Mikio Takano

    • Kyoto Univ.
  • J. C. Davis

    • Cornell Univ.
    • Cornell University and Brookhaven National Laboratory
    • Cornell University
    • LASSP, Cornell Univ.
    • Cornell University, Brookhaven National Laboratory, University of St Andrews
  • Hidenori Takagi

    • RIKEN/Univ. of Tokyo