Publication | Open Access
Two-Site Entropy and Quantum Phase Transitions in Low-Dimensional Models
159
Citations
36
References
2006
Year
Quantum ScienceQuantum Lattice SystemEngineeringQuantum ComputingPhysicsMany-body Quantum PhysicEntropyNatural SciencesVon Neumann EntropyCondensed Matter PhysicsApplied PhysicsDisordered Quantum SystemLattice Field TheoryTwo-site EntropyTopological PhaseLow-dimensional Lattice ModelsQuantum Phase Transition
We propose a new approach to study quantum phase transitions in low-dimensional lattice models. It is based on studying the von Neumann entropy of two neighboring central sites in a long chain. It is demonstrated that the procedure works equally well for fermionic and spin models, and the two-site entropy is a better indicator of quantum phase transition than calculating gaps, order parameters, or the single-site entropy. The method is especially convenient when the density-matrix renormalization-group algorithm is used.
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