Pairwise Entanglement and Geometric Phase in -Dimensional Free-Fermion Lattice Systems
arXiv:0902.2870 · doi:10.1140/epjd/e2009-00025-9
Abstract
The pairwise entanglement, measured by concurrence and geometric phase in -dimensional free-fermion lattice systems have been studied for the ground state in this paper. Their derivation with respect to the external parameter show the singularity closed to the phase transition points, and can be used to detect the phase transition in this model. Furthermore our studies show for the free-fermion model that both concurrence and geometric phase shows the intimate connection with the correlation functions. The possible relation between concurrence and geometric phase has been also discussed.
7+pages, EPJD style
References in corpus (7)
- Geometric phases and criticality in spin chain systems
- Spin Hall effect and Berry phase in two dimensional electron gas
- Entanglement and Quantum Phase Transition Revisited
- Energy as an Entanglement Witness for Quantum Many-Body Systems
- Topological Classification of Gapped Spin Chains :Quantized Berry Phase as a Local Order Parameter
- Degeneracy and Consistency Condition of Berry phases: Gap Closing under the Twist
- Topological quantum phase transition and the Berry phase near the Fermi surface in hole-doped quantum wells