Signatures of superconducting pairing driven by electron-electron interactions in moiré WSe/WSe homobilayer modelled by Hubbard Hamiltonian
arXiv:2510.24270 · doi:10.1103/kdpn-5g9d
Abstract
Strong evidence of unconventional superconductivity has been very recently reported experimentally in twisted transition metal dichalcogenide bilayer and gathered a significant amount of interest. Here we consider the Hubbard model on a triangular lattice describing the hole-doped moiré superlattice emerging in WSe/WSe twisted homobilayer in the moderately correlated regime. By applying the Density Matrix Renormalization Group, we diagonalize the spin-valley-polarized Hamiltonian and show signatures of coexisting singlet and triplet pairings in the range of hole dopings and displacement fields reported in the experiments. In this view, we show that the superconductivity in the WSe/WSe twisted homobilayer is likely to be induced by electronic correlations and has a mixed-symmetry character. These predictions can shed light on the nature of the superconducting state observed in the twisted homobilayer of WSe/WSe. We also identify the emerging superconducting orders, which are and for the singlet and triplet channels in the cylinder of width three(four), respectively.
References in corpus (31)
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Correlated Insulator Behaviour at Half-Filling in Magic Angle Graphene Superlattices
- The density-matrix renormalization group in the age of matrix product states
- Magic continuum in twisted bilayer WSe2
- Hubbard model physics in transition metal dichalcogenide moiré bands
- Signatures of Gate-Tunable Superconductivity in Trilayer Graphene/Boron Nitride Moiré Superlattice
- Moiré heterostructures as a condensed matter quantum simulator
- Correlated states in twisted double bilayer graphene
- The Hubbard Model
- The remarkable underlying ground states of cuprate superconductors
- Quantum Criticality in Twisted Transition Metal Dichalcogenides
- Absence of superconductivity in the pure two-dimensional Hubbard model
- Unconventional Superconductivity
- Band topology, Hubbard model, Heisenberg model, and Dzyaloshinskii-Moriya interaction in twisted bilayer WSe
- Friedel Oscillations and Charge Density Waves in Chains and Ladders
- Superconductivity in twisted bilayer WSe
- Tunable bilayer Hubbard model physics in twisted WSe2
- Friedel Oscillations in the Open Hubbard Chain
- Tensor Network Python (TeNPy) version 1
- Pairing Correlations on t-U-J Ladders
- Topological superconductivity in doped magnetic moiré semiconductors
- Observation of flat moiré bands in twisted bilayer WSe
- Superconductivity in high- and related strongly correlated systems from variational perspective: Beyond mean field theory
- Superconductivity in the doped quantum spin liquid on the triangular lattice
- Density-matrix-renormalization-group-based downfolding of the three-band Hubbard model: the importance of density-assisted hopping
- Mixed singlet-triplet superconducting state within the moiré -- model as applied to the description of twisted WSe bilayer
- Interaction range and temperature dependence of symmetry breaking in strongly correlated two-dimensional moiré transition metal dichalcogenide bilayers
- Singlet, Triplet and Pair Density Wave Superconductivity in the Doped Triangular-Lattice Moiré System
- Topological superconductivity with mixed singlet-triplet pairing in moiré transition-metal-dichalcogenide bilayers
- Charge Stripe Manipulation of Superconducting Pairing Symmetry Transition
- Numerical study of magnetic and pairing correlation in bilayer triangular lattice