Dynamical Symmetry Enlargement Versus Spin-Charge Decoupling in the One-Dimensional SU(4) Hubbard Model
Abstract
We investigate dynamical symmetry enlargement in the half-filled SU(4) Hubbard chain using non-perturbative renormalization group and Quantum Monte Carlo techniques. A spectral gap is shown to open for arbitrary Coulombic repulsion . At weak coupling, , a SO(8) symmetry between charge and spin-orbital excitations is found to be dynamically enlarged at low energy. At strong coupling, , the charge degrees of freedom dynamically decouple and the resulting effective theory in the spin-orbital sector is that of the SO(6) antiferromagnetic Heisenberg model. Both regimes exhibit spin-Peierls order. However, although spin-orbital excitations are in the SO(6) regime they are in the SO(8) one. The cross-over between these regimes is discussed.
Keywords
Cite
@article{arxiv.cond-mat/0310090,
title = {Dynamical Symmetry Enlargement Versus Spin-Charge Decoupling in the One-Dimensional SU(4) Hubbard Model},
author = {R. Assaraf and P. Azaria and E. Boulat and M. Caffarel and P. Lecheminant},
journal= {arXiv preprint arXiv:cond-mat/0310090},
year = {2009}
}
Comments
4 pages, 2 figures