English

Incommensurate Spin-Density Waves in a Frustrated Maple-Leaf Lattice Ferromagnet

Strongly Correlated Electrons 2026-05-14 v1

Abstract

We study how ferromagnetism breaks down in the spin-12\tfrac12 nearest-neighbor Heisenberg model on the maple-leaf lattice with ferromagnetic Jt,JdJ_t,J_d and antiferromagnetic JhJ_h, motivated by the mixed ferro-antiferromagnetic interactions in Na2_2Mn3_3O7_7. Exact diagonalization shows that the ferromagnetic boundary does not feature a zero-field spin-nematic phase on the clusters studied here, but an extended regime of incommensurate spin-density-wave correlations with continuously evolving ordering vector. The phase diagram also contains collinear N\'eel, canted 120120^\circ, and hexagonal-singlet regimes, separated by regions that remain difficult to classify from exact diagonalization alone. Variational tests of fully symmetric Gutzwiller-projected Abrikosov-fermion U(1) and Z2\mathbb{Z}_2 states find no competitive spin-liquid description of the interior unresolved regions. By contrast, on the ruby-lattice boundary we identify a point between the collinear N\'eel and hexagonal-singlet phases where a projected Z2\mathbb{Z}_2 Ansatz reproduces the finite-size energy and spin correlations with good accuracy.

Keywords

Cite

@article{arxiv.2605.12592,
  title  = {Incommensurate Spin-Density Waves in a Frustrated Maple-Leaf Lattice Ferromagnet},
  author = {Paul L. Ebert and Yasir Iqbal and Alexander Wietek},
  journal= {arXiv preprint arXiv:2605.12592},
  year   = {2026}
}

Comments

16 pages, 9 figures, comments welcome!

R2 v1 2026-07-22T07:08:31.129Z