English

Spin-orbit coupling controlled ground states in the double perovskite iridates A2BIrO6 (A = Ba, Sr; B = Lu, Sc)

Strongly Correlated Electrons 2022-09-20 v2

Abstract

Iridates with the 5d4d^4 electronic configuration have attracted recent interest due to reports of magnetically-ordered ground states despite longstanding expectations that their strong spin-orbit coupling would generate a J=0J = 0 electronic ground state for each Ir5+^{5+} ion. The major focus of prior research has been on the double perovskite iridates Ba2_2YIrO6_6 and Sr2_2YIrO6_6, where the nature of the ground states (i.e. ordered vs non-magnetic) is still controversial. Here we present neutron powder diffraction, high energy resolution fluorescence detected x-ray absorption spectroscopy (HERFD-XAS), resonant inelastic x-ray scattering (RIXS), magnetic susceptibility, and muon spin relaxation data on the related double perovskite iridates Ba2_2LuIrO6_6, Sr2_2LuIrO6_6, Ba2_2ScIrO6_6, and Sr2_2ScIrO6_6 that enable us to gain a general understanding of the electronic and magnetic properties for this family of materials. Our HERFD-XAS and RIXS measurements establish J=0J = 0 electronic ground states for the Ir5+^{5+} ions in all cases, with similar values for Hund's coupling JHJ_{\rm H} and the spin-orbit coupling constant λSOC\lambda_{\rm SOC}. Our bulk susceptibility and muon spin relaxation data find no evidence for long-range magnetic order or spin freezing, but they do reveal weak magnetic signals that are consistent with extrinsic local moments. Our results indicate that the large λSOC\lambda_{\rm SOC} is the key driving force behind the electronic and magnetic ground states realized in the 5d4d^4 double perovskite iridates, which agrees well with conventional wisdom.

Keywords

Cite

@article{arxiv.2204.05384,
  title  = {Spin-orbit coupling controlled ground states in the double perovskite iridates A2BIrO6 (A = Ba, Sr; B = Lu, Sc)},
  author = {A. A. Aczel and Q. Chen and J. P. Clancy and C. dela Cruz and D. Reig-i-Plessis and G. J. MacDougall and C. J. Pollock and M. H. Upton and T. J. Williams and N. LaManna and J. P. Carlo and J. Beare and G. M. Luke and H. D. Zhou},
  journal= {arXiv preprint arXiv:2204.05384},
  year   = {2022}
}

Comments

13 pages, 7 figures, accepted for publication by PRM