Ground-State Ferromagnetic Transition in Strongly Repulsive One-Dimensional Fermi Gases
arXiv:1305.6361 · doi:10.1103/PhysRevA.89.023611
Abstract
We prove that as a one-dimensional Fermi gas is brought across the resonance adiabatically from large repulsion to large attraction, the singlet ground state will give way to the maximum spin state, which is the lowest energy state among the states accessible to the system in this process. In the presence of tiny symmetry breaking fields that destroy spin conservation, the singlet ground state can evolve to the ferromagnetic state or a spin segregated state. We have demonstrated these effects by exact calculations on fermion cluster relevant to current experiments, and have worked out the quantum mechanical wavefunction that exhibits phase separation.
8 pages, 2 figures; more discussion on the theorem of Ferromagnetic transition
References in corpus (5)
- Itinerant Ferromagnetism in a Fermi Gas of Ultracold Atoms
- Exact Solution of Strongly Interacting Quasi-One-Dimensional Spinor Bose Gases
- Exact solution for infinitely strongly interacting Fermi gases in tight waveguides
- Universal spin dynamics in two-dimensional Fermi gases
- Phase Separation in Mixtures of Repulsive Fermi Gases Driven by Mass Difference
Cited by in corpus (64)
- A one-dimensional liquid of fermions with tunable spin
- Antiferromagnetic Heisenberg Spin Chain of a Few Cold Atoms in a One-Dimensional Trap
- Quantum magnetism without lattices in strongly interacting one-dimensional spinor gases
- One-dimensional mixtures of several ultracold atoms: a review
- Strong-coupling ansatz for the one-dimensional Fermi gas in a harmonic potential
- Strongly Interacting Quantum Gases in One-Dimensional Traps
- Effective spin-chain model for strongly interacting one-dimensional atomic gases with an arbitrary spin
- Magnetism in strongly interacting one-dimensional quantum mixtures
- Time-resolved observation of competing attractive and repulsive short-range correlations in strongly interacting Fermi gases
- Pairing in a system of a few attractive fermions in a harmonic trap
- Two-flavor mixture of a few fermions of different mass in a one-dimensional harmonic trap
- Spectroscopy for a Few Atoms Harmonically-Trapped in One Dimension
- Exact Results on Itinerant Ferromagnetism in Multi-orbital Systems on Square and Cubic Lattices
- Exact density profiles and symmetry classification for strongly interacting multi-component Fermi gases in tight waveguides
- Momentum distributions and numerical methods for strongly interacting one-dimensional spinor gases
- One-dimensional Fermi gas with a single impurity in a harmonic trap: Perturbative description of the upper branch
- Few strongly interacting ultracold fermions in one-dimensional traps of different shapes
- One-Dimensional Traps, Two-Body Interactions, Few-Body Symmetries: I. One, Two, and Three Particles
- A variational approach to repulsively interacting three-fermion systems in a one-dimensional harmonic trap
- Strongly interacting mesoscopic systems of anyons in one dimension
- Impenetrable Mass-Imbalanced Particles in One-Dimensional Harmonic Traps
- Fractional energy states of strongly-interacting bosons in one dimension
- One-Dimensional Traps, Two-Body Interactions, Few-Body Symmetries: II. Particles
- Engineering quantum magnetism in one-dimensional trapped Fermi gases with p-wave interactions
- Exploring the few- to many-body crossover using cold atoms in one dimension
- Exact Results on Itinerant Ferromagnetism and the 15-puzzle Problem
- CONAN -- the cruncher of local exchange coefficients for strongly interacting confined systems in one dimension
- Probing Ferromagnetic Order in Few-Fermion Correlated Spin-Flip Dynamics
- Strongly interacting Bose-Fermi mixtures in one dimension
- Ultracold few fermionic atoms in needle-shaped double wells: spin chains and resonating spin clusters from microscopic Hamiltonians emulated via antiferromagnetic Heisenberg and t-J models
- Strongly interacting one-dimensional quantum gas mixtures with weak p-wave interactions
- Itinerant ferromagnetism in 1D two-component Fermi gases
- Zero-Temperature Equation of State and Phase Diagram of Repulsive Fermionic Mixtures
- Strongly Interacting One-Dimensional Systems with Small Mass Imbalance
- Infinite Barriers and Symmetries for a Few Trapped Particles in One Dimension
- Comparing numerical and analytical approaches to strongly interacting two-component mixtures in one dimensional traps
- Simulation of Time-dependent Heisenberg Models in 1D
- An interpolatory ansatz captures the physics of one-dimensional confined Fermi systems
- Diffusion in a system of a few distinguishable fermions in a one-dimensional double-well potential
- Quantum Monte Carlo simulations of two-dimensional repulsive Fermi gases with population imbalance
- Exploring emergent heterogeneous phases in strongly repulsive Fermi gases
- In Situ Thermometry of Fermionic Cold-Atom Quantum Wires
- Sign problem free quantum Monte-Carlo study on thermodynamic properties and magnetic phase transitions in orbital-active itinerant ferromagnets
- Repulsive Fermi polarons with negative effective mass
- Comparing models for the ground state energy of a trapped one-dimensional Fermi gas with a single impurity
- Interplay of phase separation and itinerant magnetism for correlated few fermions in a double-well
- Magnetic phase transition in coherently coupled Bose gases in optical lattices
- Slightly imbalanced system of a few attractive fermions in a one-dimensional harmonic trap
- Exact results for itinerant ferromagnetism in a orbital system on cubic and square lattices
- Fermionic quantum carpets: From canals and ridges to solitonlike structures
- Quench dynamics of dipolar fermions in a one-dimensional harmonic trap
- Ultrastable super-Tonks-Girardeau gases under weak dipolar interactions
- Mobile Spin Impurity in an Optical Lattice
- Exact closed-form analytic wave functions in two dimensions: Contact-interacting fermionic spinful ultracold atoms in a rapidly rotating trap
- Computation of local exchange coefficients in strongly interacting one-dimensional few-body systems: local density approximation and exact results
- Identical Wells, Symmetry Breaking, and the Near-Unitary Limit
- Exchange interactions in the Hubbard-Stratonovich transformation for the stability analysis of itinerant ferromagnetism
- Spectroscopy and spin dynamics for strongly interacting few spinor bosons in one-dimensional traps
- Few-body solutions under spin-exchange interaction: magnetic bound state and the Kondo screening effect
- One-dimensional two-component fermions with contact even-wave repulsion and SU(2) breaking near-resonant odd-wave attraction
- Itinerant magnetism in Weyl spin-orbit coupled Fermi gas
- Repulsive Fermi and Bose Polarons in Quantum Gases
- Local manipulation of quantum magnetism in 1D ultracold Fermi gases across narrow resonances
- Repulsive fermions and shell effects on the surface of a sphere