English

Ba8MnNb6O24: a model two-dimensional spin-5/2 triangular lattice antiferromagnet

Materials Science 2019-06-03 v2 Strongly Correlated Electrons

Abstract

We successfully synthesized and characterized the triangular lattice anitferromagnet Ba8_8MnNb6_6O24_{24}, which comprises equilateral spin-5/2 Mn2+^{2+} triangular layers separated by six non-magnetic Nb5+^{5+} layers. The detailed susceptibility, specific heat, elastic and inelastic neutron scattering measurements, and spin wave theory simulation on this system reveal that it has a 120 degree ordering ground state below TN_N = 1.45 K with in-plane nearest-neighbor exchange interaction ~0.11 meV. While the large separation 18.9 A between magnetic layers makes the inter-layer exchange interaction virtually zero, our results suggest that a weak easy-plane anisotropy is the driving force for the km_m = (1/3 1/3 0) magnetic ordering. The magnetic properties of Ba8_8MnNb6_6O24_{24}, along with its classical excitation spectra, contrast with the related triple perovskite Ba3_3MnNb2_2O9_9, which shows easy-axis anisotropy, and the iso-structural compound Ba8_8CoNb6_6O24_{24}, in which the effective spin-1/2 Co2+^{2+} spins do not order down to 60 mK and in which the spin dynamics shows sign of strong quantum effects.

Keywords

Cite

@article{arxiv.1905.01049,
  title  = {Ba8MnNb6O24: a model two-dimensional spin-5/2 triangular lattice antiferromagnet},
  author = {R. Rawl and L. Ge and Z. Lu and Z. Evenson and C. R. Dela Cruz and Q. Huang and M. Lee and E. S. Choi and M. Mourigal and H. D. Zhou and J. Ma},
  journal= {arXiv preprint arXiv:1905.01049},
  year   = {2019}
}

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R2 v1 2026-06-23T08:55:56.027Z