English

Kondo-Ising and Tight-Binding Models for TmB4

Strongly Correlated Electrons 2017-05-31 v2

Abstract

In TmB4TmB_4, localized electrons with a large magnetic moment interact with metallic electrons in boron-derived bands. We examine the nature of TmB4TmB_4 using full-relativistic ab-initio density functional theory calculations, approximate tight-binding Hamiltonian results, and the development of an effective Kondo-Ising model for this system. Features of the Fermi surface relating to the anisotropic conduction of charge are discussed. The observed magnetic moment 6μB\sim 6 \, \mu_B is argued to require a subtle crystal field effect in metallic systems, involving a flipped sign of the effective charges surrounding a Tm ion. The role of on-site quantum dynamics in the resulting Kondo-Ising type "impurity" model are highlighted. From this model, elimination of the conduction electrons will lead to spin-spin (RKKY-type) interaction of Ising character required to understand the observed fractional magnetization plateaus in TmB4TmB_4.

Keywords

Cite

@article{arxiv.1702.07381,
  title  = {Kondo-Ising and Tight-Binding Models for TmB4},
  author = {John Shin and Zack Schlesinger and B Sriram Shastry},
  journal= {arXiv preprint arXiv:1702.07381},
  year   = {2017}
}
R2 v1 2026-06-22T18:26:53.979Z