English

Neutron diffraction study and theoretical analysis of the antiferromagnetic order and diffuse scattering in the layered Kagome system CaBaCo$_2$Fe$_2$O$_7$

Strongly Correlated Electrons 2018-04-11 v1

Abstract

The hexagonal swedenborgite, CaBaCo2_2Fe2_2O7_7, is a chiral frustrated antiferromagnet, in which magnetic ions form alternating Kagome and triangular layers. We observe a long range 3×3\sqrt{3} \times \sqrt{3} antiferromagnetic order setting in below TN=160T_N = 160 K by neutron diffraction on single crystals of CaBaCo2_2Fe2_2O7_7. Both magnetization and polarized neutron single crystal diffraction measurements show that close to TNT_N spins lie predominantly in the abab-plane, while upon cooling the spin structure becomes increasingly canted due to Dzyaloshinskii-Moriya interactions. The ordered structure can be described and refined within the magnetic space group P31mP31m^\prime. Diffuse scattering between the magnetic peaks reveals that the spin order is partial. Monte Carlo simulations based on a Heisenberg model with two nearest-neighbor exchange interactions show a similar diffuse scattering and coexistence of the 3×3\sqrt{3} \times \sqrt{3} order with disorder. The coexistence can be explained by the freedom to vary spins without affecting the long range order, which gives rise to ground-state degeneracy. Polarization analysis of the magnetic peaks indicates the presence of long-period cycloidal spin correlations resulting from the broken inversion symmetry of the lattice, in agreement with our symmetry analysis.

Keywords

Cite

@article{arxiv.1801.04690,
  title  = {Neutron diffraction study and theoretical analysis of the antiferromagnetic order and diffuse scattering in the layered Kagome system CaBaCo$_2$Fe$_2$O$_7$},
  author = {Johannes D. Reim and Erik Rosén and Oksana Zaharko and Maxim Mostovoy and Julien Robert and Martin Valldor and Werner Schweika},
  journal= {arXiv preprint arXiv:1801.04690},
  year   = {2018}
}

Comments

12 pages, 13 figures, 2 tables