Universal quantum behaviors of interacting fermions in 1D traps: from few particles to the trap thermodynamic limit
arXiv:1401.3514 · doi:10.1103/PhysRevA.89.023635
Abstract
We investigate the ground-state properties of trapped fermion systems described by the Hubbard model with an external confining potential. We discuss the universal behaviors of systems in different regimes: from few particles, i.e. in dilute regime, to the trap thermodynamic limit. The asymptotic trap-size (TS) dependence in the dilute regime (increasing the trap size l keeping the particle number N fixed) is described by a universal TS scaling controlled by the dilute fixed point associated with the metal-to-vacuum quantum transition. This scaling behavior is numerically checked by DMRG simulations of the one-dimensional (1D) Hubbard model. In particular, the particle density and its correlations show crossovers among different regimes: for strongly repulsive interactions they approach those of a spinless Fermi gas, for weak interactions those of a free Fermi gas, and for strongly attractive interactions they match those of a gas of hard-core bosonic molecules. The large-N behavior of systems at fixed N/l corresponds to a 1D trap thermodynamic limit. We address issues related to the accuracy of the local density approximation (LDA). We show that the particle density approaches its LDA in the large-l limit. When the trapped system is in the metallic phase, corrections at finite l are O(l^{-1}) and oscillating around the center of the trap. They become significantly larger at the boundary of the fermion cloud, where they get suppressed as O(l^{-1/3}) only. This anomalous behavior arises from the nontrivial scaling at the metal-to-vacuum transition occurring at the boundaries of the fermion cloud.
20 pages
References in corpus (30)
- Many-Body Physics with Ultracold Gases
- Theory of ultracold Fermi gases
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Observation of the Pairing Gap in a Strongly Interacting Fermi Gas
- Observation of Phase Separation in a Strongly-Interacting Imbalanced Fermi Gas
- Molecular Probe of Pairing in the BEC-BCS Crossover
- Direct Observation of the Superfluid Phase Transition in Ultracold Fermi Gases
- Phase diagram of a two-component Fermi gas with resonant interactions
- Deformation of a Trapped Fermi Gas with Unequal Spin Populations
- Phase diagram of a strongly interacting polarized Fermi gas in one dimension
- Quantum Monte Carlo simulations of confined bosonic atoms in optical lattices
- Formation of spatial shell structures in the superfluid to Mott insulator transition
- An exactly solvable model of the BCS-BEC crossover
- Pairing states of a polarized Fermi gas trapped in a one-dimensional optical lattice
- Local quantum criticality in confined fermions on optical lattices
- Fulde-Ferrell-Larkin-Ovchinnikov superfluidity in one-dimensional optical lattices
- Exact solution for infinitely strongly interacting Fermi gases in tight waveguides
- Exact quantum Monte Carlo study of one dimensional trapped fermions with attractive contact interactions
- Density functional theory in one-dimension for contact-interacting fermions
- Superfluid to normal phase transition in strongly correlated bosons in two and three dimensions
- Quantum Criticality from in-situ Density Imaging
- Exploring quantum criticality based on ultracold atoms in optical lattices
- Renormalization-group flow and asymptotic behaviors at the Berezinskii-Kosterlitz-Thouless transitions
- Ground states and dynamics of population-imbalanced Fermi condensates in one dimension
- Critical Behaviour in Trapped Strongly Interacting Fermi Gases
- Quantitative determination of the Hubbard model phase diagram from optical lattice experiments by two-parameter scaling
- Scaling of noise correlations in one-dimensional-lattice-hard-core-boson systems
- Mott Phase in Polarized Two-component Atomic Fermi Lattice Gas:A Playground for S=1/2 Heisenberg Model in Magnetic Field
- Comment on "Direct Mapping of the Finite Temperature Phase Diagram of Strongly Correlated Quantum Models" by Q. Zhou, Y. Kato, N. Kawashima, and N. Trivedi, Phys. Rev. Lett. 103, 085701 (2009)
- Scaling behaviour of trapped bosonic particles in two dimensions at finite temperature
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- Non-interacting fermions at finite temperature in a -dimensional trap: universal correlations
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- Finite temperature free fermions and the Kardar-Parisi-Zhang equation at finite time
- Pairing in a system of a few attractive fermions in a harmonic trap
- Universal ground state properties of free fermions in a -dimensional trap
- Number statistics for -ensembles of random matrices: applications to trapped fermions at zero temperature
- Pairing of few Fermi atoms in one dimension
- Hubbard model: Pinning of occupation numbers and role of symmetries
- One-dimensional multicomponent Fermi gas in a trap: quantum Monte Carlo study
- Spectral order statistics of Gaussian random matrices: large deviations for trapped fermions and associated phase transitions
- Bose-Einstein condensation and critical behavior of two-component bosonic gases
- Information measures for a local quantum phase transition: Lattice fermions in a one-dimensional harmonic trap
- Phase diagram and multicritical behaviors of mixtures of 3D bosonic gases
- Particle-number scaling of the quantum work statistics and Loschmidt echo in Fermi gases with time-dependent traps
- Dimensional crossover of Bose-Einstein condensation phenomena in quantum gases confined within slab geometries
- Ground-state energy, density profiles, and momentum distribution of attractively interacting 1D Fermi gases with hard-wall boundaries: a Monte Carlo study
- Information measures for a local quantum phase transition: Lattice bosons in a one-dimensional harmonic trap
- Scaling phenomena driven by inhomogeneous conditions at first-order quantum transitions
- Trap effects and continuum limit of the Hubbard model in the presence of a harmonic potential
- Out-of-equilibrium quantum dynamics of fermionic gases in the presence of localized particle loss