English

The Classical Heisenberg Model on the Centred Pyrochlore Lattice

Strongly Correlated Electrons 2023-07-26 v3

Abstract

The centred pyrochlore lattice is a novel geometrically frustrated lattice, realized in the metal-organic framework Mn(ta)2_2 (arXiv:2203.08780) where the basic unit of spins is a five site centred tetrahedron. Here, we present an in-depth theoretical study of the J1J2J_1-J_2 classical Heisenberg model on this lattice, using a combination of mean-field analytical methods and Monte Carlo simulations. We find a rich phase diagram with low temperature states exhibiting ferrimagnetic order, partial ordering, and a highly degenerate spin liquid with distinct regimes of low temperature correlations. We discuss in detail how the regime displaying broadened pinch points in its spin structure factor is consistent with an effective description in terms of a fluid of interacting charges. We also show how this picture holds in two dimensions on the analogous centred kagome lattice and elucidate the connection to the physics of thin films in (d+1d+1) dimensions. Furthermore, we show that a Coulomb phase can be stabilized on the centred pyrochlore lattice by the addition of further neighbour couplings. This demonstrates the centred pyrochlore lattice is an experimentally relevant geometry which naturally hosts emergent gauge fields in the presence of charges at low energies.

Keywords

Cite

@article{arxiv.2303.11010,
  title  = {The Classical Heisenberg Model on the Centred Pyrochlore Lattice},
  author = {Rajah P. Nutakki and Ludovic D. C. Jaubert and Lode Pollet},
  journal= {arXiv preprint arXiv:2303.11010},
  year   = {2023}
}

Comments

29 pages, 9 figures, resubmission to SciPost with minor revisions

R2 v1 2026-06-28T09:23:53.726Z