English

Enhanced magnetism and suppressed magnetoelastic coupling induced by electron doping in Ca$_{1-x}$Y$_{x}$MnReO$_6$

Strongly Correlated Electrons 2022-04-27 v1 Other Condensed Matter

Abstract

The Ca2_2MnReO6_6 double perovskite is a spin-orbit-assisted Mott insulator with exotic magnetic properties, including a largely non-collinear Mn2+^{2+} spin arrangement and nearly orthogonal coupling between such spins and the much smaller Re 5d5d magnetic moments. Here, the electron-doped compound Ca1.7_{1.7}Y0.3_{0.3}MnReO6_6 is investigated. Neutron and X-ray powder diffraction confirm that nearly full chemical order is maintained at the Mn and Re sites under the Y substitution at the Ca site. X-ray absorption measurements and an analysis of the Mn-O/Re-O bond distances show that the Mn oxidation state remains stable at +2 whereas Re is reduced upon doping. The electron doping increases the magnetic ordering temperature from Tc=121T_c = 121 to 150150 K and also enhances significantly the ferromagnetic component of the Mn spins at the expense of the antiferromagnetic component at the base temperature (T=3T=3 K). The lattice parameter anomalies at TcT_c observed in the parent compound are suppressed by the electron doping. The possible reasons for the enhanced magnetism and the suppressed magnetoelastic coupling in Ca1.7_{1.7}Y0.3_{0.3}MnReO6_6 are discussed.

Keywords

Cite

@article{arxiv.2202.08220,
  title  = {Enhanced magnetism and suppressed magnetoelastic coupling induced by electron doping in Ca$_{1-x}$Y$_{x}$MnReO$_6$},
  author = {A. S. Cavichini and M. T. Orlando and M. C. A. Fantini and R. Tartaglia and C. W. Galdino and F. Damay and F. Porcher and E. Granado},
  journal= {arXiv preprint arXiv:2202.08220},
  year   = {2022}
}

Comments

Article: 14 pages, 6 figures. Appendix: 5 pages, 5 figures. Submitted to Journal of Physics: Condensed Matter