English

A semi-empirical analysis of the paramagnetic susceptibility of solid state magnetic clusters

Materials Science 2022-02-08 v1 Strongly Correlated Electrons

Abstract

Recent developments in the synthesis of new magnetic materials lead to the discovery of new quantum paramagnets. Many of these materials, such as the perovskites Ba4_{4}LnMn4_{4}O12_{12} (Ln = Sc or Nb), Ba3_{3}Mn2_{2}O8_{8}, and Sr3_{3}Cr2_{2}O8_{8} present isolated magnetic clusters with strong intracluster interactions but weak intercluster interactions, which delays the onset of order to lower temperatures (TT). This offset between the local energy scale and the magnetic ordering temperature is the hallmark of magnetic frustration. At sufficient high-TT, the paramagnetic susceptibility (χ\chi) of frustrated cluster magnets can be fit to a Curie-Weiss law, but the derived microscopic parameters cannot in general be reconciled with those obtained from other methods. In this work, we present an analytical microscopic theory to obtain χ\chi of dimer and trimer cluster magnets, the two most commonly found in literature, making use of suitable Heisenberg-type Hamiltonians. We also add intercluster interactions in a mean-field level, thus obtaining an expression to the critical temperature of the system and defining a new effective frustration parameter fefff_{\text{eff}}. Our method is exemplified by treating the χ\chi data of some selected materials.

Keywords

Cite

@article{arxiv.2202.02792,
  title  = {A semi-empirical analysis of the paramagnetic susceptibility of solid state magnetic clusters},
  author = {Lauro B. Braz and Fernando A. Garcia},
  journal= {arXiv preprint arXiv:2202.02792},
  year   = {2022}
}

Comments

5+2 pages, 1+1 figures, 1 table, undergraduate research paper. We welcome more data on dimer and trimer magnetic clusters