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Canted antiferromagnetism in phase-pure CuMnSb

Strongly Correlated Electrons 2018-05-30 v1 Materials Science

Abstract

We report the low-temperature properties of phase-pure single crystals of the half-Heusler compound CuMnSb grown by means of optical float-zoning. The magnetization, specific heat, electrical resistivity, and Hall effect of our single crystals exhibit an antiferromagnetic transition at TN=55 KT_{\mathrm{N}} = 55~\mathrm{K} and a second anomaly at a temperature T34 KT^{*} \approx 34~\mathrm{K}. Powder and single-crystal neutron diffraction establish an ordered magnetic moment of (3.9±0.1) μB/f.u.(3.9\pm0.1)~\mu_{\mathrm{B}}/\mathrm{f.u.}, consistent with the effective moment inferred from the Curie-Weiss dependence of the susceptibility. Below TNT_{\mathrm{N}}, the Mn sublattice displays commensurate type-II antiferromagnetic order with propagation vectors and magnetic moments along 111\langle111\rangle (magnetic space group R[I]3cR[I]3c). Surprisingly, below TT^{*}, the moments tilt away from 111\langle111\rangle by a finite angle δ11\delta \approx 11^{\circ}, forming a canted antiferromagnetic structure without uniform magnetization consistent with magnetic space group C[B]cC[B]c. Our results establish that type-II antiferromagnetism is not the zero-temperature magnetic ground state of CuMnSb as may be expected of the face-centered cubic Mn sublattice.

Keywords

Cite

@article{arxiv.1804.03223,
  title  = {Canted antiferromagnetism in phase-pure CuMnSb},
  author = {A. Regnat and A. Bauer and A. Senyshyn and M. Meven and K. Hradil and P. Jorba and K. Nemkovski and B. Pedersen and R. Georgii and S. Gottlieb-Schönmeyer and C. Pfleiderer},
  journal= {arXiv preprint arXiv:1804.03223},
  year   = {2018}
}

Comments

14 pages, 15 figures