Quantum phase diagram of the spin- Heisenberg antiferromagnet on the square-kagome lattice: a tensor network study
arXiv:2503.07689 · doi:10.1103/76vf-63zr
Abstract
We study the ground-state phase diagram of the spin- antiferromagnetic Heisenberg model on the square-kagome lattice using infinite projected entangled-pair states (iPEPS). By systematically varying the ratio of exchange couplings on triangular and square plaquettes, we establish a complete quantum phase diagram in the thermodynamic limit. In the intermediate-coupling regime, we identify four distinct nonmagnetic phases that are unambiguously characterized as valence-bond crystals (VBCs) by their symmetry-inequivalent patterns of strong and weak spin-spin correlations. These include a plaquette crossed-dimer VBC, a loop-six VBC stabilized around the isotropic point, a generalized pinwheel VBC with reduced rotational symmetry, and a decorated loop-six VBC proximate to ferrimagnetic order. We determine the phase boundaries using a combination of bond-resolved correlation functions, entanglement entropy, and magnetization. For transitions not accompanied by sharp entanglement signatures, we extract the spin gap from finite-field simulations, allowing us to distinguish gapped and gapless VBC phases. At larger coupling ratios, the system undergoes transitions into imperfect and perfect ferrimagnetic states. Our results resolve long-standing ambiguities in the square-kagome Heisenberg model and provide a quantitatively reliable reference for future theoretical and experimental studies of frustrated quantum magnets.
8 pages, 5 figures, and Supplemental Material
References in corpus (23)
- Matrix Product States, Projected Entangled Pair States, and variational renormalization group methods for quantum spin systems
- Projected wavefunction study of Spin-1/2 Heisenberg model on the Kagome lattice
- Accurate determination of tensor network state of quantum lattice models in two dimensions
- Ground State of the Kagome Lattice Heisenberg Antiferromagnet
- Exact results on the Kitaev model on a hexagonal lattice: spin states, string and brane correlators, and anyonic excitations
- Gapless ground state in the archetypal quantum kagome antiferromagnet ZnCu(OH)Cl
- Advances on Tensor Network Theory: Symmetries, Fermions, Entanglement, and Holography
- Valence-bond crystal in the extended kagome spin-1/2 quantum Heisenberg antiferromagnet: A variational Monte Carlo approach
- Valence-bond crystals in the kagome spin-1/2 Heisenberg antiferromagnet: a symmetry classification and projected wave function study
- Pinwheel valence-bond-crystal ground state of the spin- Heisenberg antiferromagnet on the lattice
- Thermodynamics of the spin-half square-kagome lattice antiferromagnet
- Tensor network study of the spin-1/2 Heisenberg anti-ferromagnet on the Shuriken lattice
- Non-Coplanar Magnetic Orders in Classical Square-Kagome Antiferromagnets
- Magnetism of the - square-kagome lattice antiferromagnet
- Spin- kagome Heisenberg antiferromagnet with strong breathing anisotropy
- $\require{mhchem}$Quantum paramagnetism in the decorated square-kagome antiferromagnet $\ce{Na6Cu7BiO4(PO4)4Cl3}$
- Monopole excitations in the Dirac spin liquid on the triangular lattice
- Static and resonant properties of decorated square kagome lattice compound KCu(TeO)(SO)Cl
- Piercing the Dirac spin liquid: From a single monopole to chiral states
- Field-induced spin liquid in the decorated square-kagome antiferromagnet nabokoite KCuTeO(SO)Cl
- Tensor network analysis of the maple-leaf antiferromagnet spangolite
- High-frequency dielectric anomalies in a highly frustrated square kagome lattice nabokoite family compounds ACu(TeO)(SO)Cl (A=Na, K, Rb, Cs)
- Symmetry, Superposition and Fragmentation in Classical Spin Liquids: A General Framework and Applications to Square Kagome Magnets