Quantum Phase Diagram and Excitations for the One-Dimensional S=1 Heisenberg Antiferromagnet with Single-Ion Anisotropy
arXiv:0811.0646 · doi:10.1103/PhysRevB.79.054412
Abstract
We investigate the zero-temperature phase diagram of the one-dimensional S=1 Heisenberg antiferromagnet with single-ion anisotropy. By employing high-order series expansions and quantum Monte Carlo simulations we obtain accurate estimates for the critical points separating different phases in the quantum phase diagram. Additionally, excitation spectra and gaps are obtained.
8 pages, 7 figures. Published version
References in corpus (12)
- The ALPS project release 1.3: open source software for strongly correlated systems
- Bose-Einstein Condensation in Magnetic Insulators
- Hidden order in 1D Bose insulators
- Generalized Directed Loop Method for Quantum Monte Carlo Simulations
- Implementation of Spin Hamiltonians in Optical Lattices
- Scaling Properties of Fidelity in Spin-one Anisotropic Model
- Evidence of Unconventional Universality Class in a Two-Dimensional Dimerized Quantum Heisenberg Model
- On critical phases in anisotropic spin-1 chains
- Local Measures of Entanglement and Critical Exponents at Quantum Phase Transitions
- Fidelity approach to Gaussian transitions
- Investigation of Quantum Phase Transitions using Multi-target DMRG Methods
- Quantum Phase Transition in a Heisenberg Antiferromagnet on a Square Lattice with Strong Plaquette Interactions