English

Averievite: a copper oxide kagome antiferromagnet

Strongly Correlated Electrons 2018-08-29 v2

Abstract

Averievite, Cu5_5V2_2O10_{10}(CsCl), is an oxide mineral composed of Cu2+^{2+} kagome layers sandwiched by Cu2+^{2+}-V5+^{5+} honeycomb layers. We have synthesized this oxide and investigated its properties from ab initio calculations along with susceptibility and specific heat measurements. The data indicate a Curie-Weiss temperature of 185 K as well as long-range magnetic order at 24 K due to the significant interlayer coupling from the honeycomb copper ions. This order is suppressed by substituting these coppers by isoelectronic zinc, suggesting that Zn-substituted averievite is a promising spin liquid candidate. A further proposed substitution that replaces V5+^{5+} by Ti4+^{4+} not only dopes the material, but is predicted to give rise to a two-dimensional electronic structure featuring Dirac crossings. As such, averievite is an attractive platform for S=1/2 kagome physics with the potential for realizing novel electronic states.

Keywords

Cite

@article{arxiv.1805.00561,
  title  = {Averievite: a copper oxide kagome antiferromagnet},
  author = {A. S. Botana and H. Zheng and S. H. Lapidus and J. F. Mitchell and M. R. Norman},
  journal= {arXiv preprint arXiv:1805.00561},
  year   = {2018}
}