Pairing susceptibility of the two-dimensional Hubbard model in the thermodynamic limit
arXiv:2301.08176 · doi:10.1103/PhysRevB.107.195138
Abstract
We compute the diagrammatic expansion of the particle-particle susceptibility via algorithmic Matsubara integration and compute the correlated pairing susceptibility in the thermodynamic limit of the 2D Hubbard Model. We study the static susceptibility and its dependence on the pair momentum for a range of temperature, interaction strength, and chemical potential. We show that -wave pairing is expected in the model in the limit from direct perturbation theory. From this, we identify key second and third-order diagrams that support pairing processes and note that the diagrams responsible are not a part of charge or spin susceptibility expansions. We find two key components for pairing at momenta and that can be well fit as separate bosonic modes. We extract amplitudes and correlation length scales where we find a predominantly local pairing and non-local pairs and present the relative weights of these modes for variation in temperature, doping, and interaction strength.
9 pages - 10 figures
References in corpus (11)
- Cluster Dynamical Mean Field Theory of the Mott Transition
- Fluctuation diagnostics of the electron self-energy: Origin of the pseudogap physics
- Energetics of superconductivity in the two dimensional Hubbard model
- Intertwined spin, charge and pair correlations in the two-dimensional Hubbard model in the thermodynamic limit
- Mechanism of Superconductivity in the Hubbard Model at Intermediate Interaction Strength
- Quantifying the role of antiferromagnetic fluctuations in the superconductivity of the doped Hubbard model
- Algorithmic approach to diagrammatic expansions for real-frequency evaluation of susceptibility functions
- Third Order Perturbation Analysis of Pairing Symmetry in Two-Dimensional Hubbard Model
- Single particle properties of the 2D Hubbard model for real frequencies at weak coupling: Breakdown of the Dyson series for partial self-energy expansions
- LIBAMI: Implementation of Algorithmic Matsubara Integration
- One- and two-particle properties of the weakly interacting two-dimensional Hubbard model in proximity to the van Hove singularity