中文

Cuprate d-wave superconductivity based on Non perturbative many body theory for spin fluctuation

强关联电子 2026-07-05 v1 超导电性

摘要

We employ the nonperturbative many-body spin GW method to compute the single-particle Green's function, and the covariance method to evaluate the correlation functions of two body, for the Hubbard model for superconductors. The key transition temperatures, namely the Neel temperature and the superconducting critical temperature Tc are found to be in quantitative agreement with experimental data. The evolution of the Fermi surface in different doping regimes is also presented, which clearly shows transitions from pseudogap to strange metal and to Fermi liquid phase. The method has been benchmarked at strong coupling and low temperature and is free from the fermion sign problem. Simulations on lattices up to 64 times 64 are also feasible, making access to the thermodynamic limit possible. This approach may offer a new route toward investigating strongly correlated systems, especially cuprate superconductors.

引用

@article{arxiv.2607.04168,
  title  = {Cuprate d-wave superconductivity based on Non perturbative many body theory for spin fluctuation},
  author = {Jianwei Gong and Junnian Xiong and Ruitao Xiao and Hui Li and Ziyu Li and Huaqing Huang and Dingping Li},
  journal= {arXiv preprint arXiv:2607.04168},
  year   = {2026}
}

备注

15 pages, 6 figures