Global Phase Diagram of D-wave Superconductivity in the Square-Lattice Model
arXiv:2311.15092 · doi:10.1073/pnas.2420963122
Abstract
The Hubbard and closely related models are exciting platforms for unconventional superconductivity (SC). Through state-of-the-art density matrix renormalization group calculations using the grand canonical ensemble, we address open issues regarding the ground-state phase diagram of the extended model on a square lattice in the parameter regime relevant to cuprate superconductors. On large 8-leg cylinders, we demonstrate that the pure model with only nearest-neighbor hoppings and superexchange interactions, for a wide range of doping (), hosts robust d-wave superconductivity possibly coexisting with weak unidirectional pair density wave. Furthermore, a small next nearest neighbor hopping suppresses pair and charge density waves, resulting in a uniform d-wave SC phase in both electron- and hole-doped cuprate model systems. Our work validates the model as a proper minimum model for the emergence of superconductivity in cuprate superconductors.
References in corpus (26)
- Theory of Intertwined Orders in High Temperature Superconductors
- Identifying Topological Order by Entanglement Entropy
- The Hubbard Model
- Striped superconductors: How the cuprates intertwine spin, charge and superconducting orders
- Coexistence of superconductivity with partially filled stripes in the Hubbard model
- Ground State Phase Diagram of the -- model
- Algebraic charge liquids
- Unidirectional d-wave superconducting domains in the two-dimensional t-J model
- High Temperature Superconductivity in a Lightly Doped Quantum Spin Liquid
- Robust d-wave superconductivity in the square-lattice - model
- Plaquette versus ordinary -wave pairing in the -Hubbard model on a width 4 cylinder
- Competition among various charge-inhomogeneous states and d-wave superconducting state in Hubbard models on square lattices
- Stripe order enhanced superconductivity in the Hubbard model
- Emergent Superconductivity and Competing Charge Orders in Hole-Doped Square-Lattice - Model
- Pair density wave in doped three-band Hubbard model on two-leg square cylinders
- Pairing Properties of the --- model
- Superconducting stripes in the hole-doped three-band Hubbard model
- Superconducting valence bond fluid in lightly doped 8-leg - cylinders
- Dual vortex theory of doped Mott insulators
- Fragmented Cooper pair condensation in striped superconductors
- Sign structure of the -- model and its physical consequences
- iPEPS study of spin symmetry in the doped - model
- Ground state phase diagram and superconductivity of the doped Hubbard model on six-leg square cylinders
- Pair density wave and superconductivity in a kinetically frustrated doped Emery model on a square lattice
- The ground state of electron-doped model on cylinders
- Competing pair density wave orders in the square lattice - model
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- A Promising Method for Strongly Correlated Electrons in Two Dimensions: Gutzwiller-Guided Density Matrix Renormalization Group
- Finite temperature dopant-induced spin reorganization explored via tensor networks in the two-dimensional - model
- Unveiling Stripe-shaped Charge Density Modulations in Doped Mott Insulators
- Competing pair density wave orders in the square lattice - model
- Superconductivity of Bad Fermions: Origin of Two Gaps in HTSC Cuprates
- Revealing quantum phase string effect in doped Mott-insulator: a tensor network state approach
- Superfluid dome in the spatially modulated two-dimensional XY model
- Pairing phase diagram for electron-doped cuprates in the square-lattice Hubbard model