English

Mean field magnetism and spin frustration in a double perovskite oxide with compositional complexity

Materials Science 2025-11-05 v1 Strongly Correlated Electrons

Abstract

The rise of high-entropy oxides as a major functional materials design principle in recent years has prompted us to investigate how compositional disorder affects long-range magnetic ordering in double perovskite oxides. Since ferromagnetic insulators are emerging as an important platform for lossless spintronics, we consider the RE2RE_2NiMnO6_6 (RERE : rare-earth) family and investigate single-crystalline films of (La0.4_{0.4}Nd0.4_{0.4}Sm0.4_{0.4}Gd0.4_{0.4}Y0.4_{0.4})NiMnO6_{6} grown on SrTiO3_3 (001) substrates in this work. Despite configurational disorder and high cationic size variance at the RERE site, the material exhibits robust ferromagnetic ordering with a Curie temperature (TcT_\mathrm{c}) of approximately 150 K. This TcT_\mathrm{c} is consistent with the expectation based on consideration of the average ionic radii of the rare-earth (RERE) sites in the bulk RE2RE_2NiMnO6_6. Below TcT_\mathrm{c}, Raman spectroscopy measurement finds a deviation from anharmonic behavior, where the phonon renormalization aligns with a mean-field approximation of spin-spin correlation. At lower temperature, magnetic RERE ions also contributed to the magnetic behavior and the system displays a reentrant spin-glass-like behavior. This study demonstrates that while a mean-field approach serves as a viable starting point for predicting the long-range transition temperature, microscopic details of the complex magnetic interactions are essential for understanding the low-temperature phase.

Keywords

Cite

@article{arxiv.2511.02485,
  title  = {Mean field magnetism and spin frustration in a double perovskite oxide with compositional complexity},
  author = {Nandana Bhattacharya and Ravi Kiran Dokala and Sourav Chowdhury and Suresh Chandra Joshi and Subha Dey and Jayjit Kumar Dey and Subhajit Nandy and Daniel Perez Salinas and Manuel Valvidares and Moritz Hoesch and Roland Mathieu and Srimanta Middey},
  journal= {arXiv preprint arXiv:2511.02485},
  year   = {2025}
}

Comments

21 pages, 6 figures