English

Random singlet state in Ba$_5$CuIr$_3$O$_{12}$ single crystals

Strongly Correlated Electrons 2020-01-20 v1 Materials Science

Abstract

We study the thermodynamic and high-magnetic-field properties of the magnetic insulator Ba5_5CuIr3_3O12_{12}, which shows no magnetic order down to 2 K consistent with a spin liquid ground state. While the temperature dependence of the magnetic susceptibility and the specific heat shows only weak antiferromagnetic correlations, we find that the magnetization does not saturate up to a field of 59 Tesla, leading to an apparent contradiction. We demonstrate that the paradox can be resolved, and all of the experimental data can be consistently described within the framework of random singlet states. We demonstrate a generic procedure to derive the exchange coupling distribution P(J)P(J) from the magnetization measurements and use it to show that the experimental data is consistent with the power-law form P(J)JαP(J)\sim J^{-\alpha} with α0.6\alpha \approx 0.6 . Thus, we reveal that high-magnetic-field measurements can be essential to discern quantum spin liquid candidates from disorder dominated states that do not exhibit long-range order.

Keywords

Cite

@article{arxiv.2001.06013,
  title  = {Random singlet state in Ba$_5$CuIr$_3$O$_{12}$ single crystals},
  author = {Pavel A. Volkov and Choong-Jae Won and D. I. Gorbunov and Jae-Wook Kim and Mai Ye and Heung-Sik Kim and J. H. Pixley and Sang-Wook Cheong and G. Blumberg},
  journal= {arXiv preprint arXiv:2001.06013},
  year   = {2020}
}
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