Superconductivity in the t-J model on the square lattice

ORAL

Abstract

We report a density-matrix renormalization group study of lightly hole-doped t-J model on the square lattice. We observe an interesting interplay between d-wave superconductivity and spin and charge density wave (CDW) order. Despite the tendency of CDW order is strong, our results on finite-width cylinders strongly suggest that the ground state of the system is a Luther-Emery liquid with gapped spin excitation. There is no long-range CDW order no matter its pattern is commensurate or incommensurate. Moreover, we find that the superconducting pair-pair correlation decays power-law with an exponent close to one. The connection of our results to two dimensions is also discussed.

*This work was supported by the Department of Energy, Office of Science, Basic Energy Sciences, Materials Sciences and Engineering Division, under Contract DE-AC02-76SF00515.

Presenters

  • Hong-Chen Jiang

    • SLAC - Natl Accelerator Lab
    • Stanford Institute for Materials and Energy Sciences, SLAC and Stanford University
    • SIMES, SLAC and Stanford University

Authors

  • Hong-Chen Jiang

    • SLAC - Natl Accelerator Lab
    • Stanford Institute for Materials and Energy Sciences, SLAC and Stanford University
    • SIMES, SLAC and Stanford University
  • Zheng-Yu Weng

    • Tsinghua University
    • Institute for Advanced Study, Tsinghua University
  • Steven Kivelson

    • Stanford University
    • Stanford Univ
    • Physics, Stanford University