English

Octupolar vs N\'{e}el Order in Cubic 5$d^2$ double perovskites

Strongly Correlated Electrons 2020-03-04 v3

Abstract

We report time-of-flight neutron spectroscopic and diffraction studies of the 5d2d^2 cubic double pervoskite magnets, Ba2_2MOsO6_6 (MM = Zn, Mg, Ca). These cubic materials are all described by antiferromagnetically-coupled 5d2d^2 Os6+^{6+} ions decorating a face-centred cubic (FCC) lattice. They all exhibit thermodynamic anomalies consistent with phase transitions at a temperature TT^*, and exhibit a gapped magnetic excitation spectrum with spectral weight concentrated at wavevectors typical of type I antiferromagnetic orders. While muon spin resonance experiments show clear evidence for time reversal symmetry breaking, no corresponding magnetic Bragg scattering is observed at low temperatures. These results, consistent with low temperature octupolar or quadrupolar order, are discussed in the context of other 5d2d^2 DP magnets, and theories for d2d^2 ions on a FCC lattice which predict exotic orders driven by multipolar interactions.

Keywords

Cite

@article{arxiv.1909.03113,
  title  = {Octupolar vs N\'{e}el Order in Cubic 5$d^2$ double perovskites},
  author = {Dalini D. Maharaj and Gabriele Sala and Matthew B. Stone and Edwin Kermarrec and Clemens Ritter and François Fauth and Casey A. Marjerrison and John E. Greedan and Arun Paramekanti and Bruce D. Gaulin},
  journal= {arXiv preprint arXiv:1909.03113},
  year   = {2020}
}

Comments

6 pages, 4 figures main manuscript. 3 pages, 3 figures supplemental material. For parallel theory work, see arXiv:1909.03089