English

Site-substitution in GdMnO3 : effects on structural, electronic and magnetic properties

Materials Science 2021-01-04 v1

Abstract

We report on detailed structural, electronic and magnetic studies of GdMn1x_{1-x}Crx_xO3_3 for Cr doping levels 0 \le xx \le 1. In the solid solutions, the Jahn-Teller distortion associated with Mn3+^{3+} ions gives rise to major changes in the bc{bc}-plane sub-lattice and also the effective orbital ordering in the ab{ab}-plane, which persist up to the compositions xx \sim 0.35. These distinct features in the lattice and orbital degrees of freedom are also correlated with bcbc-plane anisotropy of the local Gd environment. A gradual evolution of electronic states with doping is also clearly seen in O KK-edge x-ray absorption spectra. Evidence of magnetization reversal in field-cooled-cooling mode for xx \ge 0.35 coinciding the Jahn-Teller crossover, suggests a close correlation between magnetic interaction and structural distortion. These observations indicate a strong entanglement between lattice, spin, electronic and orbital degrees of freedom. The nonmonotonic variation of remnant magnetization can be explained by doping induced modification of magnetic interactions. Density functional theory calculations are consistent with a layer-by-layer type doping with ferromagnetic (antiferomagnetic) coupling between Mn (Cr) ions for intermediate compound (xx = 0.5), which is distinct from that observed for the end members GMnO3_3 and GdCrO3_3.

Keywords

Cite

@article{arxiv.1908.02307,
  title  = {Site-substitution in GdMnO3 : effects on structural, electronic and magnetic properties},
  author = {Sudipta Mahana and Bipul Rakshit and Pronoy Nandi and Raktima Basu and Sandip Dhara and U. Manju and Subhendra D. Mahanti and D. Topwal},
  journal= {arXiv preprint arXiv:1908.02307},
  year   = {2021}
}
R2 v1 2026-06-23T10:41:22.182Z