Chiral crossroads in : a tale of frustration in maple leaf lattice
arXiv:2504.12387 · doi:10.1103/3zlw-hrbf
Abstract
Motivated by the recent observation of a uniform vector chirality (UVC) magnetic order in the maple-leaf lattice (MLL) realization via powder neutron scattering experiments, we investigate the classical antiferromagnetic Heisenberg model on the maple-leaf lattice. The MLL features three symmetry-inequivalent nearest-neighbor couplings, , , and . Previous studies, primarily focused on the case where , identified a staggered vector chirality (SVC) order. Extending beyond this limit, we demonstrate that the SVC order remains stable across a broad parameter regime. However, we also find that the UVC order cannot emerge from the nearest-neighbor model alone. By introducing a further-neighbor antiferromagnetic interaction, , we demonstrate that even a weak can cause a first-order phase transition from SVC to UVC order. Using linear spin wave theory, we compute the dynamical spin structure factor, revealing distinct signatures for SVC and UVC orders that can be probed through inelastic neutron scattering experiments. Additionally, we calculate the specific heat, which exhibits qualitative agreement with the experimental data for . Our findings provide a minimal framework for understanding and related MLL systems, like , suggesting avenues for further experimental and theoretical investigations.
8 pages, 5 figures
References in corpus (22)
- Spin current and magneto-electric effect in non-collinear magnets
- Spin-polarization coupling in multiferroic transition-metal oxides
- Novel magnetic states and nematic spin chirality in the kagome lattice metal YMnSn
- Octupolar ordering of classical kagome antiferromagnets in two and three dimensions
- Chirality density wave of the 'hidden order' phase in URuSi
- Chiral-Symmetric Higher-Order Topological Phases of Matter
- Weak ferromagnetic order breaking the threefold rotational symmetry of the underlying kagomé lattice in CdCu(OH)(NO)HO
- Intertwined nematic orders in a frustrated ferromagnet
- RKKY interaction in three-dimensional electron gases with linear spin-orbit coupling
- The chiral Hall effect in canted ferromagnets and antiferromagnets
- Another Exact Ground State of a 2D Quantum Antiferromagnet
- RKKY interaction in Rashba altermagnets
- Maple Leaf Antiferromagnet in a Magnetic Field
- Candidate quantum disordered intermediate phase in the Heisenberg antiferromagnet on the maple-leaf lattice
- Phase diagram of the - Heisenberg Model on the Maple-Leaf Lattice: Neural networks and density matrix renormalization group
- Noncoplanar orders and quantum disordered states in maple-leaf (anti)ferromagnets
- Order by disorder in classical kagome antiferromagnets with chiral interactions
- Effective spin-1 breathing kagome Hamiltonian induced by the exchange hierarchy in the maple leaf mineral bluebellite
- Candidate quantum spin liquids on the maple-leaf lattice
- Chirality-inverted Dzyaloshinskii-Moriya interaction
- Resonant inelastic x-ray scattering study of vector chiral ordered kagome antiferromagnet
- Negative-chirality order in kagome antiferromagnet CdCu(OH)(NO)HO
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- Crystallography-driven molecularization of a two-dimensional spin- magnet