Continuous phase transition from Néel state to Z_2 spin liquid state on a square lattice
arXiv:1308.2759 · doi:10.1103/PhysRevB.89.235122
Abstract
Recent numerical studies of the - model on a square lattice suggest a possible continuous phase transition between the Néel state and a gapped spin-liquid state with Z topological order. We show that such a phase transition can be realized through two steps: First bring the Néel state to the U(1) deconfined quantum critical point, which has been studied in the context of Néel -- valence bond solid (VBS) state phase transition. Then condense the spinon pair -- skyrmion/antiskyrmion bound state, which carries both gauge charge and flux of the U(1) gauge field emerging at the deconfined quantum critical point. We also propose a Schwinger boson projective wave function to realize such a Z spin liquid state and find that it has a relatively low variational energy (/site) for the - model at . The spin liquid state we obtain breaks the fourfold rotational symmetry of the square lattice and therefore is a nematic spin liquid state. This direct continuous phase transition from the Néel state to a spin liquid state may be realized in the - model, or the anisotropic -- model.
23 pages, 2 figures
References in corpus (11)
- "Deconfined" quantum critical points
- Quantum criticality beyond the Landau-Ginzburg-Wilson paradigm
- Magnetism and its microscopic origin in iron-based high-temperature superconductors
- Quantum magnetism and criticality
- Spin Liquid States on the Triangular and Kagome Lattices: A Projective Symmetry Group Analysis of Schwinger Boson States
- Plaquette valence bond solid in the frustrated Heisenberg quantum antiferromagnet on the square lattice
- Direct evidence for a gapless spin liquid by frustrating Néel antiferromagnetism
- Global phase diagrams of frustrated quantum antiferromagnets in two dimensions: doubled Chern-Simons theory
- Symplectic N and time reversal in frustrated magnetism
- Variational study of J1-J2 Heisenberg model on Kagome lattice using projected Schwinger boson wave functions
- Destruction of Neel order in the cuprates by electron-doping
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