The asymmetric valence-bond-solid states in quantum spin chains: The difference between odd and even spins
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Publication:5885688
DOI10.1063/5.0123743OpenAlexW4327952744MaRDI QIDQ5885688
Publication date: 4 April 2023
Published in: Journal of Mathematical Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2205.00653
Cites Work
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- A class of asymmetric gapped Hamiltonians on quantum spin chains and its characterization. III
- A short proof of stability of topological order under local perturbations
- A class of asymmetric gapped Hamiltonians on quantum spin chains and its characterization I
- A class of asymmetric gapped Hamiltonians on quantum spin chains and its characterization. II
- Lieb-Robinson bounds and the exponential clustering theorem
- Spectral gap and exponential decay of correlations
- Finitely correlated states on quantum spin chains
- Hidden symmetry breaking and the Haldane phase in \(S=1\) quantum spin chains
- Energy gaps and elementary excitations for certain VBS-quantum antiferromagnets.
- A \({{\mathbb{Z}}}_2\)-index of symmetry protected topological phases with reflection symmetry for quantum spin chains
- Quasi-locality bounds for quantum lattice systems. II: perturbations of frustration-free spin models with gapped ground states
- The Lieb-Schultz-Mattis theorem. A topological point of view
- Product vacua with boundary states and the classification of gapped phases
- A \(\mathbb{Z}_2\)-index of symmetry protected topological phases with time reversal symmetry for quantum spin chains
- Two soluble models of an antiferromagnetic chain
- Physics and Mathematics of Quantum Many-Body Systems
- Topological quantum order: Stability under local perturbations
- Quantum Spin Pump in S=1/2 Antiferromagnetic Chains –Holonomy of Phase Operators in sine-Gordon Theory–
- Note on a Theorem of Bloch Concerning Possible Causes of Superconductivity
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