Rigorous Proof of Pseudospin Ferromagnetism in Two-Component Bosonic Systems with Component-Independent Interactions
arXiv:cond-mat/0209529 · doi:10.1142/S0217979203018041
Abstract
For a two-component bosonic system, the components can be mapped onto a pseudo-spin degree of freedom with spin quantum number S=1/2. We provide a rigorous proof that for a wide-range of real Hamiltonians with component independent mass and interaction, the ground state is a ferromagnetic state with pseudospin fully polarized. The spin-wave excitations are studied and found to have quadratic dispersion relations at long wave length.
4 pages, no figure
References in corpus (6)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Stable Skyrmions in two-component Bose-Einstein condensates
- Ferromagnetism in a lattice of Bose condensates
- Polarization of interacting bosons with spin
- Skyrmion Physics in Bose-Einstein Ferromagnets
- Instabilities in a Two-Component, Species Conserving Condensate
Cited by in corpus (23)
- Exact solution for infinitely strongly interacting Fermi gases in tight waveguides
- Spin waves in a one-dimensional spinor Bose gas
- Ferromagnetic behaviour in the strongly interacting two-component Bose gas
- Effective spin-chain model for strongly interacting one-dimensional atomic gases with an arbitrary spin
- Supersymmetry and Goldstino-like Mode in Bose-Fermi Mixtures
- Ferromagnetic phase transition and Bose-Einstein condensation in spinor Bose gases
- Density-functional theory of two-component Bose gases in one-dimensional harmonic traps
- Ground-state properties of interacting two-component Bose gases in a hard-wall trap
- Spin dynamics and Andreev-Bashkin effect in mixtures of one-dimensional Bose gases
- Universal Tan relations for quantum gases in one dimension
- Collective dispersion relations for the 1D interacting two-component Bose and Fermi gases
- Polarization Suppression and Nonmonotonic Local Two-Body Correlations in the Two-Component Bose Gas in One Dimension
- Superfluid vs Ferromagnetic Behaviour in a Bose Gas of Spin-1/2 Atoms
- Quantum droplets with particle imbalance in one-dimensional optical lattices
- Critical phenomena in one dimension from a Bethe ansatz perspective
- Static properties and spin dynamics of the ferromagnetic spin-1 Bose gas in magnetic field
- Thermodynamics, density profiles and correlation functions of the inhomogeneous one-dimensional spinor Bose gas
- Magnetism of one-dimensional strongly repulsive spin-1 bosons with antiferromagnetic spin exchange interaction
- Exact Hole-induced Resonating-Valence-Bond Ground State in Certain Hubbard Models
- Universality class of quantum criticality for strongly repulsive spin-1 bosons with antiferromagnetic spin-exchange interaction
- Quantum state preparation of topological chiral spin liquids via Floquet engineering
- Upper bound of one-magnon excitation and lower bound of effective mass for ferromagnetic spinor Bose and Fermi gases
- Expansion of one-dimensional spinor gases from power-law traps