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cond-mat.str-el2026

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

Jianwei Gong, Junnian Xiong, Ruitao Xiao +4

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,…

cond-mat.str-el2026

Nonpertubative Many-Body Theory for the Two-Dimensional Hubbard Model at Low Temperature: From Weak to Strong Coupling Regimes

Ruitao Xiao, Yingze Su, Junnian Xiong +3

In theoretical studies of two-dimensional (2D) systems, the Mermin-Wagner theorem prevents continuous symmetry breaking at any finite temperature, thus forbidding a Landau phase tr…

cond-mat.str-el2025

Effects of the pseudogap and the Fermi surface on the rapid Hall-coefficient changes in cuprates

Yingze Su, Hui Li, Huaqing Huang +1

High- cuprates are characterized by strong spin fluctuations, which give rise to antiferromagnetic and pseudogap phases and may be key to the high superconducting critical tem…

cond-mat.str-el2025

Application of Many-body Non-perturbative Theories to the Three-Dimensional Attractive Hubbard Model

Junnian Xiong, Hui Li, Yingze Su +1

The attractive Fermi-Hubbard model stands out as a simple model for studying the pairing and superconductivity of fermions on a lattice. In this article, we apply several many-body…

cond-mat.str-el2024

Post- theory and its application to pseudogap in strongly correlated system

Hui Li, Yingze Su, Junnian Xiong +3

The approximation is a widely used framework for studying correlated materials, but it struggles with certain limitations, such as its inability to explain pseudogap phenomena…