English

Non-collinear Order and Spin-Orbit Coupling in Sr$_3$ZnIrO$_6$

Strongly Correlated Electrons 2020-05-19 v2 Materials Science

Abstract

Sr3_{3}ZnIrO6_{6} is an effective spin one-half Mott insulating iridate belonging to a family of magnets which includes a number of quasi-one dimensional systems as well as materials exhibiting three dimensional order. Here we present the results of an extensive investigation into the magnetism including heat capacity, a.c. susceptibility, muon spin rotation (μ\muSR), neutron diffraction and inelastic neutron scattering on the same sample. It is established that the material exhibits a transition at about 1717 K into a three-dimensional antiferromagnetic structure with propagation vector k=(0,12,1)\boldsymbol{k}=(0,\frac{1}{2},1) in the hexagonal setting of R3ˉ\bar{3}c and non-collinear moments of 0.870.87μB\mu_B on Ir4+^{4+} ions. Further we have observed a well defined powder averaged spin wave spectrum with zone boundary energy of 5\sim 5 meV at 55 K. We stress that a theoretical analysis shows that the observed non-collinear magnetic structure arises from anisotropic inter- and intra- chain exchange which has its origin in significant spin-orbit coupling. The model can satisfactorily explain the observed spin wave excitations.

Keywords

Cite

@article{arxiv.1610.00038,
  title  = {Non-collinear Order and Spin-Orbit Coupling in Sr$_3$ZnIrO$_6$},
  author = {P. A. McClarty and A. D. Hillier and D. T. Adroja D. D. Khalyavin and S. Rayaprol and P. Manuel and W. Kockelmann and E. V. Sampathkumaran},
  journal= {arXiv preprint arXiv:1610.00038},
  year   = {2020}
}

Comments

6 pages, 5 figures