Band crossover and magnetic phase diagram of high-Tc superconducting compound Ba2CuO4-\delta
Abstract
We present the influences of electronic and magnetic correlations and doping evolution on the groundstate properties of recently discovered superconductor BaCuO by utilizing the Kotliar-Ruckenstein slave boson method. Starting with an effective two-orbital Hubbard model (Scalapino {\it et al.} Phys. Rev. {\bf B 99}, 224515 (2019)), we demonstrate that with increasing doping concentration, the paramagnetic (PM) system evolves from two-band character to single-band ones around the electron filling n=2.5, with the band nature of the and orbitals to the orbital, slightly affected when the electronic correlation U varies from 2 to 4 eV. Considering the magnetic correlations, the system displays one antiferromagnetically metallic (AFM) phase in and a PM phase in at U=2 eV, or two AFM phases in and , and a PM phase in respectively, at U=4 eV. Our results show that near realistic superconducting state around n=2.6 the intermediate correlated BaCuO should be single band character, and the s-wave superconducting pairing strength becomes significant when U2 eV, and crosses over to d-wave when U2.2 eV.
Keywords
Cite
@article{arxiv.2109.03382,
title = {Band crossover and magnetic phase diagram of high-Tc superconducting compound Ba2CuO4-\delta},
author = {Xiao-Cheng Bai and Ya-Min Quan and H. Q. Lin and Liang-Jian Zou},
journal= {arXiv preprint arXiv:2109.03382},
year = {2022}
}
Comments
9 pages, 10 figures