English

Spin-orbit coupling in a half-filled $t_{2g}$ shell: the case of $5d^3$ K$_2$ReCl$_6$

Strongly Correlated Electrons 2024-11-05 v1

Abstract

The half-filled t2gt_{2g} shell of the t2g3t_{2g}^3 configuration usually, in LS coupling, hosts a S = 3/2 ground state with quenched orbital moment. This state is not Jahn-Teller active. Sufficiently large spin-orbit coupling ζ\zeta has been predicted to change this picture by mixing in orbital moment, giving rise to a sizable Jahn-Teller distortion. In 5d35d^3 K2_2ReCl6_6 we study the electronic excitations using resonant inelastic x-ray scattering (RIXS) and optical spectroscopy. We observe on-site intra-t2gt_{2g} excitations below 2 eV and corresponding overtones with two intra-t2gt_{2g} excitations on adjacent sites, the Mott gap at 2.7 eV, t2gt_{2g}-to-ege_g excitations above 3 eV, and charge-transfer excitations at still higher energy. The intra-t2gt_{2g} excitation energies are a sensitive measure of ζ\zeta and Hund's coupling JHJ_H. The sizable value of ζ\zeta \approx 0.29 eV places K2_2ReCl6_6 into the intermediate coupling regime, but ζ/JH0.6\zeta/J_H \approx 0.6 is not sufficiently large to drive a pronounced Jahn-Teller effect. We discuss the ground state wavefunction in a Kanamori picture and find that the S = 3/2 multiplet still carries about 97 % of the weight. However, the finite admixture of orbital moment allows for subtle effects. We discuss small temperature-induced changes of the optical data and find evidence for a lowering of the ground state by about 3 meV below the structural phase transitions.

Keywords

Cite

@article{arxiv.2311.11419,
  title  = {Spin-orbit coupling in a half-filled $t_{2g}$ shell: the case of $5d^3$ K$_2$ReCl$_6$},
  author = {P. Warzanowski and M. Magnaterra and G. Schlicht and Q. Faure and Ch. J. Sahle and P. Becker and L. Bohatý and M. Moretti Sala and G. Monaco and M. Hermanns and P. H. M. van Loosdrecht and M. Grüninger},
  journal= {arXiv preprint arXiv:2311.11419},
  year   = {2024}
}

Comments

16 pages, 14 figures