Theory of electrons with orbital degeneracy
arXiv:cond-mat/9911192 · doi:10.1103/PhysRevB.62.15493
Abstract
The Hubbard model for electrons with orbital degeneracy is shown to have an underlying SU_d(4) symmetry of spin-orbital double. A hidden charge SU_c(4) symmetry is exposed and an extended Lieb-Mattis transformation which maps these two symmetries into each other is given. On the basis of elementary degenerate perturbative theory, it is shown that the system with strong repulsive coupling is equivalent to a SO(6) Heisenberg magnet at half-filling and a SU(4) one at quarter-filling. The band is half-filled at all temperature for . The features of ground state and low-lying excitations in one dimension are indicated according to exact solutions. Various possibilities of symmetry breaking are also given.
Extended PRB version, 6 pages, symmetry breaking added
References in corpus (5)
- Phase diagram of a 1 dimensional spin-orbital model
- Triplet superconductivity in quasi one-dimensional systems
- Numerical Study of the One-Dimensional Spin-Orbit Coupled System with SU(2)SU(2) Symmetry
- Effect of symmetry breaking perturbations in the one-dimensional SU(4) spin-orbital model
- One dimensional model for doubly degenerate electrons