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Lattice-site-specific spin-dynamics in double perovskite Sr2CoOsO6

Materials Science 2014-04-29 v2 Strongly Correlated Electrons

Abstract

We have studied the magnetic properties and spin-dynamics of the structurally-ordered double perovskite Sr2_2CoOsO6_6. Our neutron diffraction, muon spin relaxation and ac-susceptibility measurements reveal two antiferromagnetic (AFM) phases on cooling from room temperature down to 2 K. In the first AFM phase, with transition temperature TN=108T_{\mathrm{N}}=108 K, cobalt (3d7d^7, S=3/2S=3/2) and osmium (5d2d^2, S=1S=1) moments fluctuate dynamically, while their \textit{average} effective moments undergo long-range order. In the second AFM phase with TN=67T_{\mathrm{N}}=67 K, cobalt moments first become frozen and induce a noncollinear spin-canted AFM state, while dynamically fluctuating osmium moments are later frozen into a randomly canted state at T5T\approx 5 K. Our \textit{ab initio} calculations indicate that the effective exchange coupling between cobalt and osmium sites is rather weak, so that cobalt and osmium sublattices exhibit different ground states and spin-dynamics, making Sr2_2CoOsO6_6 distinct from previously reported double-perovskite compounds.

Keywords

Cite

@article{arxiv.1312.0767,
  title  = {Lattice-site-specific spin-dynamics in double perovskite Sr2CoOsO6},
  author = {Binghai Yan and Avijit Kumar Paul and Sudipta Kanungo and Manfred Reehuis and Andreas Hoser and Daniel M. Többens and Walter Schnelle and Robert C. Williams and Tom Lancaster and Fan Xiao and Johannes S. Möller and Stephen J. Blundell and William Hayes and Claudia Felser and Martin Jansen},
  journal= {arXiv preprint arXiv:1312.0767},
  year   = {2014}
}

Comments

Accepted by Phys. Rev. Lett. 12 pages, 3 figures and 1 table