English

Structural distortion below the N\'eel temperature in spinel GeCo$_2$O$_4$

Materials Science 2014-08-13 v1

Abstract

A structural phase transition from cubic Fd3ˉmFd\bar{3}m to tetragonal II41_1/amdamd symmetry with c/a>c/a > 1 is observed at TST_{\rm{S}} = 16 K in spinel GeCo2_2O4_4 below the N\'eel temperature TNT_N = 21 K. Structural and magnetic ordering appear to be decoupled with the structural distortion occurring at 16 K while magnetic order occurs at 21 K as determined by magnetic susceptibility and heat capacity measurements. An elongation of CoO6_6 octahedra is observed in the tetragonal phase of GeCo2_2O4_4. We present the complete crystallographic description of GeCo2_2O4_4 in the tetragonal II41_1/amdamd space group and discuss the possible origin of this distortion in the context of known structural transitions in magnetic spinels. GeCo2_2O4_4 exhibits magnetodielectric coupling below TNT_{\rm{N}}. The related spinels GeFe2_2O4_4 and GeNi2_2O4_4 have also been examined for comparison. Structural transitions were not detected in either compound down to TT \approx 8 K. Magnetometry experiments reveal in GeFe2_2O4_4 a second antiferromagnetic transition, with TN1T_{\rm{N1}} = 7.9 K and TN2T_{\rm{N2}} = 6.2 K, that was previously unknown, and that bear a similarity to the magnetism of GeNi2_2O4_4.

Keywords

Cite

@article{arxiv.1405.7099,
  title  = {Structural distortion below the N\'eel temperature in spinel GeCo$_2$O$_4$},
  author = {Phillip T. Barton and Moureen C. Kemei and Michael W. Gaultois and Stephanie L. Moffitt and Lucy E. Darago and Ram Seshadri and Matthew R. Suchomel and Brent C. Melot},
  journal= {arXiv preprint arXiv:1405.7099},
  year   = {2014}
}
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