Ground-state properties of the attractive one-dimensional Bose-Hubbard model
arXiv:cond-mat/0611510 · doi:10.1103/PhysRevB.75.115119
Abstract
We study the ground state of the attractive one-dimensional Bose-Hubbard model, and in particular the nature of the crossover between the weak interaction and strong interaction regimes for finite system sizes. Indicator properties like the gap between the ground and first excited energy levels, and the incremental ground-state wavefunction overlaps are used to locate different regimes. Using mean-field theory we predict that there are two distinct crossovers connected to spontaneous symmetry breaking of the ground state. The first crossover arises in an analysis valid for large L with finite N, where L is the number of lattice sites and N is the total particle number. An alternative approach valid for large N with finite L yields a second crossover. For small system sizes we numerically investigate the model and observe that there are signatures of both crossovers. We compare with exact results from Bethe ansatz methods in several limiting cases to explore the validity for these numerical and mean-field schemes. The results indicate that for finite attractive systems there are generically three ground-state phases of the model.
17 pages, 12 figures, Phys.Rev.B(accepted), minor changes and updated references
References in corpus (10)
- Ground state overlap and quantum phase transitions
- Repulsively bound atom pairs in an optical lattice
- Formation of bright matter-wave solitons during the collapse of Bose-Einstein condensates
- Ground-state properties of one-dimensional ultracold Bose gases in a hard-wall trap
- Exact results for the 1D interacting mixed Bose-Fermi gas
- Translationally invariant nonlinear Schrodinger lattices
- Collapsing Bose-Einstein condensates beyond the Gross-Pitaevskii approximation
- Emergent quantum phases in a heteronuclear molecular Bose--Einstein condensate model
- The q-deformed Bose gas: Integrability and thermodynamics
- On quantum phase crossovers in finite systems
Cited by in corpus (55)
- Ground state fidelity from tensor network representations
- Atomtronic circuits: from many-body physics to quantum technologies
- Ground-state fidelity in one-dimensional gapless model
- Scaling Properties of Fidelity in Spin-one Anisotropic Model
- Fidelity approach to quantum phase transitions: finite size scaling for quantum Ising model in a transverse field
- Fidelity Between Partial States as Signature of Quantum Phase Transitions
- Some remarks on the coherent-state variational approach to nonlinear boson models
- Fidelity approach to Gaussian transitions
- Fidelity, fidelity susceptibility and von Neumann entropy to characterize the phase diagram of an extended Harper model
- Quantum Criticality in a Bosonic Josephson Junction
- Finite-Size Geometric Entanglement from Tensor Network Algorithms
- Interacting bosons in a triple well: Preface of many-body quantum chaos
- Excitation spectrum of bosons in a finite one-dimensional circular waveguide via the Bethe ansatz
- Spontaneous symmetry breaking and bifurcations in ground state fidelity for quantum lattice systems
- Ground-state fidelity of Luttinger liquids: A wave functional approach
- Quantum signatures of self-trapping transition in attractive lattice bosons
- Quantum dynamics of repulsively bound atom pairs in the Bose-Hubbard model
- Local correlations in the attractive 1D Bose gas: from Bethe ansatz to the Gross-Pitaevskii equation
- Pathway toward the formation of supermixed states in ultracold boson mixtures loaded in ring lattices
- Quantum phase transitions in a two-dimensional quantum XYX model: Ground-state fidelity and entanglement
- Raise and fall of a bright soliton in an optical lattice
- Kitaev honeycomb tensor networks: exact unitary circuits and applications
- Entanglement modes and topological phase transitions in superconductors
- Dynamical bifurcation as a semiclassical counterpart of a quantum phase transition
- The phases of the disordered Bose-Hubbard model with attractive interactions
- Large-N ground state of the Lieb-Liniger model and Yang-Mills theory on a two-sphere
- Entanglement, fidelity, and quantum phase transition in antiferromagnetic-ferromagnetic alternating Heisenberg chain
- Nonlinear Phenomenology from Quantum Mechanics: Soliton in a Lattice
- Andreev-reflection and Aharonov-Bohm dynamics in atomtronic circuits
- Quantum phase transition in easy-axis antiferromagnetic Heisenberg spin-1 chain
- Control of unstable macroscopic oscillations in the dynamics of three coupled Bose condensates
- Persistent currents in ultracold gases
- Deterministic Many-Resonator W Entanglement of Nearly Arbitrary Microwave States via Attractive Bose-Hubbard Simulation
- Quantum quench dynamics of the attractive one-dimensional Bose gas via the coordinate Bethe ansatz
- From integrability to chaos: the quantum-classical correspondence in a triple well bosonic model
- Universality and two-body losses: lessons from the effective non-Hermitian dynamics of two particles
- Ground-State Fidelity and Kosterlitz-Thouless Phase Transition for Spin 1/2 Heisenberg Chain with Next-to-the-Nearest-Neighbor Interaction
- Bifurcation in ground-state fidelity for a one-dimensional spin model with competing two-spin and three-spin interactions
- Holographic encoding of universality in corner spectra
- Ground-state properties of the two-site Hubbard-Holstein model: an exact solution
- Spectral properties of attractive bosons in a ring lattice including a single-site potential
- Quantum-granularity effect in the formation of supermixed solitons in ring lattices
- Mapping repulsive to attractive interaction in driven-dissipative quantum systems
- Bosonic molecules in a lattice: unusual fluid phase from multichannel interactions
- Emergence of a Renormalized Expansion in Quenched Critical Many-Body Systems
- Groundstate fidelity phase diagram of the fully anisotropic two-leg spin-1/2 XXZ ladder
- Two-particle States in One-dimensional Coupled Bose-Hubbard Models
- Dynamics of kicked matter-wave solitons in an optical lattice
- The Yang-Baxter paradox
- Ground-State Analysis for an Exactly Solvable Coupled-Spin Hamiltonian
- Semiclassical bifurcations and topological phase transitions in a one-dimensional lattice of coupled Lipkin-Meshkov-Glick models
- Encoding strongly-correlated many-boson wavefunctions on a photonic quantum computer: application to the attractive Bose-Hubbard model
- Solving the Bose-Hubbard model in new ways
- Polynomial deformations of and unified algebraic framework for solutions of a class of spin models
- Extracting atoms one by one from a small matter-wave soliton