Unveiling Order behind Complexity: Coexistence of Ferromagnetism and Bose-Einstein Condensation
arXiv:cond-mat/0207073 · doi:10.1103/PhysRevB.65.180402
Abstract
We present an algebraic framework for identifying the order parameter and the possible phases of quantum systems that is based on identifying the local dimension of the quantum operators and using the SU(N) group representing the generators of generalized spin-particle mappings. We illustrate this for =3 by presenting for any spatial dimension the exact solution of the bilinear-biquadratic =1 quantum Heisenberg model at a high symmetry point. Through this solution we rigorously show that itinerant ferromagnetism and Bose-Einstein condensation may coexist.
5 pages, 1 psfigure
Cited by in corpus (32)
- A subsystem-independent generalization of entanglement
- A symmetry principle for Topological Quantum Order
- Spin nematic correlations in bilinear-biquadratic S=1 spin chains
- Spin nematics in the bilinear-biquadratic S=1 spin chain
- One-Dimensional Magnetism
- Algebraic Approach to Interacting Quantum Systems
- Resonant magnetic excitations at high energy in superconducting
- Néel and Spin-Peierls ground states of two-dimensional SU(N) quantum antiferromagnets
- Magnetic Resonant excitations in High-{} superconductors
- Renormalization algorithm for the calculation of spectra of interacting quantum systems
- Exact Bond Ordered Ground State for the Transition Between the Band and the Mott Insulator
- Designing spin-1 lattice models using polar molecules
- Holographic Symmetries and Generalized Order Parameters for Topological Matter
- Generalized spin-wave theory: application to the bilinear-biquadratic model
- Field-induced phase transitions of repulsive spin-1 bosons in optical lattices
- Generalization of entanglement to convex operational theories: Entanglement relative to a subspace of observables
- Dynamics and relaxation in spin nematics
- The dimerized phase of ionic Hubbard models
- Quantum solitons with emergent interactions in a model of cold atoms on the triangular lattice
- Stripes, topological order, and deconfinement in a planar t-Jz model
- The ordering of energy levels for SU(n) symmetric antiferromagnetic chains
- Superconductivity in strongly repulsive fermions: the role of kinetic-energy frustration
- Bilinear-biquadratic spin-1 rings: an SU(2)-symmetric MPS algorithm for periodic boundary conditions
- Exact models for trimerization and tetramerization in spin chains
- Hierarchical Mean-Field Theories in Quantum Statistical Mechanics
- Study of the bilinear biquadratic Heisenberg model on a honeycomb lattice via Schwinger bosons
- Theory of Fractionally-magnetized Quantum Ferromagnet
- Dimerization in ultracold spinor gases with Zeeman splitting
- Quantum Fluctuations in the van der Walls material
- Inferring Hidden Symmetries of Exotic Magnets from Detecting Explicit Order Parameters
- An exact real-space renormalization method and applications
- Hidden unity in the quantum description of matter