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Isolated spin ladders in Ln$_2$Ti$_9$Sb$_{11}$ (Ln:La-Nd) metals

Strongly Correlated Electrons 2025-08-11 v1 Materials Science

Abstract

Here we present the discovery and characterization of a series of antimonides Ln2_2Ti9_9Sb11_{11} (Ln: La--Nd) which exhibit well-isolated, n=2n=2 rare-earth spin ladders. We discuss the structure of the new compounds, with a particular focus on the magnetic Ln spin ladders. Nd2_2Ti9_9Sb11_{11} and Ce2_2Ti9_9Sb11_{11} exhibit antiferromagnetic interactions and a well-defined doublet ground state, whereas Pr2_2Ti9_9Sb11_{11} exhibits a weakly magnetic singlet ground state. Nd2_2Ti9_9Sb11_{11} is a poor metal with an electrical resistivity of 0.1mΩ\Omega-cm at 300K and weak temperature dependence. The thermal conductivity along the ladder exhibits significant field dependence even at 40K, considerably higher than the magnetic ordering temperature of 1.1K. Compared to compounds with transition metal spin ladders, the rare-earth elements impart much lower energy scales, making these compounds highly tunable with external stimuli like magnetic fields. The diverse magnetism of the rare-earth ions and RKKY interactions further contribute to the potential for a wide array of rich magnetic ground states, positioning these materials as a rare example of an inorganic square spin-ladder platform.

Keywords

Cite

@article{arxiv.2508.05870,
  title  = {Isolated spin ladders in Ln$_2$Ti$_9$Sb$_{11}$ (Ln:La-Nd) metals},
  author = {Brenden R. Ortiz and Heda Zhang and Karolina Gornicka and Matthew S. Cook and Suchismita Sarker and Satoshi Okamoto and Jiaqiang Yan},
  journal= {arXiv preprint arXiv:2508.05870},
  year   = {2025}
}