Role of backflow correlations for the non-magnetic phase of the t-t' Hubbard model
arXiv:0805.1476 · doi:10.1103/PhysRevB.78.041101
Abstract
We introduce an efficient way to improve the accuracy of projected wave functions, widely used to study the two-dimensional Hubbard model. Taking the clue from the backflow contribution, whose relevance has been emphasized for various interacting systems on the continuum, we consider many-body correlations to construct a suitable approximation for the ground state at intermediate and strong couplings. In particular, we study the phase diagram of the frustrated Hubbard model on the square lattice and show that, thanks to backflow correlations, an insulating and non-magnetic phase can be stabilized at strong coupling and sufficiently large frustrating ratio .
5 pages, 4 figures
References in corpus (6)
- Mott Transition from a Spin Liquid to a Fermi Liquid in the Spin-Frustrated Organic Conductor kappa-(ET)2Cu2(CN)3
- Mott Transitions and d-wave Superconductivity in Half-Filled-Band Hubbard Model on Square Lattice with Geometric Frustration
- Gapless quantum spin liquid, stripe and antiferromagnetic phases in frustrated Hubbard models in two dimensions
- Superconductivity and antiferromagnetism in the two-dimensional Hubbard model: a variational study
- Magnetism and d-wave superconductivity on the half-filled square lattice with frustration
- Conditions for magnetically induced singlet d-wave superconductivity on the square lattice
Cited by in corpus (43)
- Effective spin model for the spin-liquid phase of the Hubbard model on the triangular lattice
- Ab-initio quantum chemistry with neural-network wavefunctions
- Mott insulating states with competing orders in the triangular lattice Hubbard model
- Fermionic Wave Functions from Neural-Network Constrained Hidden States
- Variational Benchmarks for Quantum Many-Body Problems
- Intermediate Coupling Model of the Cuprates
- Superconductivity, charge-density waves, antiferromagnetism, and phase separation in the Hubbard-Holstein model
- Hidden Mott transition and large- superconductivity in the two-dimensional Hubbard model
- Testing the Monte Carlo - Mean Field approximation in the one-band Hubbard model
- Neural-network quantum states for many-body physics
- The itinerant ferromagnetic phase of the Hubbard model
- Excited states in variational Monte Carlo using a penalty method
- Emergence of non-Fermi-liquid behavior due to Fermi surface reconstruction in the underdoped cuprate superconductors
- Altermagnetism on the Shastry-Sutherland lattice
- Effective Spin Couplings in the Mott Insulator of the Honeycomb Lattice Hubbard Model
- Mott transition, Widom line and pseudogap in the half-filled triangular lattice Hubbard model
- Magnetic and spin-liquid phases in the frustrated Hubbard model on the triangular lattice
- Collinear antiferromagnetic state in a two-dimensional Hubbard model at half filling
- Mott physics in the half-filled Hubbard model on a family of vortex-full square lattices
- Explicitly antisymmetrized neural network layers for variational Monte Carlo simulation
- Orbital-dependent backflow wave functions for real-space quantum Monte Carlo
- Gutzwiller Magnetic Phase Diagram of the Undoped t-t'-U Hubbard Model
- The Hubbard model on triangular -leg cylinders: chiral and non-chiral spin liquids
- Matrix Product States with Backflow correlations
- Stripes in the extended Hubbard model: A Variational Monte Carlo analysis
- A Pseudo-BCS Wavefunction from Density Matrix Decomposition:Application in Auxiliary-Field Quantum Monte Carlo
- Ground state properties of one-dimensional and two-dimensional Hubbard model from Gutzwiller conjugate gradient minimization theory
- Accurate neural quantum states for interacting lattice bosons
- Doping the Mott insulating state of the triangular-lattice Hubbard model reveals the Sordi transition
- Frustration-Induced Superconductivity in the - Hubbard Model
- Gutzwiller Charge Phase Diagram of Cuprates, including Electron-Phonon Coupling Effects
- Metal-insulator transition and antiferromagnetism in the generalized Hubbard model: Treatment of correlation effects
- Magnetic phase diagram and Mott transition of the half-filled 1/5-depleted Hubbard model with frustration
- Spectroscopy of two-dimensional interacting lattice electrons using symmetry-aware neural backflow transformations
- Two -linear scattering rate regimes in the triangular lattice Hubbard model
- Solving Fermi-Hubbard-type Models by Tensor Representations of Backflow Corrections
- Simple Fermionic backflow states via a systematically improvable tensor decomposition
- Partial suppression of magnetism in the square lattice SU(3) Hubbard model
- Uncovering double-stripe and plaquette antiferromagnetic states in the one-band Hubbard model on a frustrated square lattice
- Modal Backflow Neural Quantum States for Anharmonic Vibrational Calculations
- An improved particle swarm optimization algorithm and its application to search for new magnetic ground states in the Hubbard model
- Variational Monte Carlo study of stripes as a function of doping in the Hubbard model
- Insulating and metallic phases in the one-dimensional Hubbard-Su-Schrieffer-Heeger model: Insights from a backflow-inspired variational wave function