English

Microscopic insights of magnetism in Sm$ _{2} $NiMnO$ _{6} $ double perovskite

Materials Science 2022-03-23 v1

Abstract

The functional characteristics of double perovskites with unique ferromagnetic-insulator ground state have been controversial due to the unavoidable presence of anti-site disorders (ASDs). Here, we aim to investigate the origin of magnetic ordering on local and global scales in Sm2_{2}NiMnO6_{6} (SNMO) double perovskite system. Different calcination routes are exploited to generate different cation arrangements in SNMO and the corresponding magnetic configurations are examined using the high energy (E \sim 0.3 eV) `hot neutrons', which has helped to overcome Sm absorption as well as to record total (Bragg's+diffuse) scattering profiles with high momentum transfer (Qmax _{max} \sim 24 angstrom1 ^{-1} ). We have observed that the Ni-Mn sublattice adopts long range collinear ferromagnetic FxFz F_{x}F_{z} structure with commensurate kk=(0, 0, 0) propagation vector, below ordering temperature T \lesssim 160 K, irrespective of variable ASD concentrations. In addition, the signatures indicating the antiparallel polarization of Sm paramagnetic moments with respect to Ni-Mn network, are noticed in the vicinity of anomalous magnetic transitions at T \lesssim 35 K. The real space pair distribution function calculations have provided a direct visualization of ASDs by means of broadening in Ni/Mn-Mn/Ni linkage. Employing the Reverse Monte Carlo approach on diffuse magnetic scattering profiles, we have observed the negative spin-spin correlation function which suggests the Ni-Ni antiferromagnetic exchange interactions ranging up to first nearest neighbor distance. These results confirm that the existence of ASDs in cation ordered host matrix leads to competing ferromagnetic-antiferromagnetic phases in a broad temperature range, which quantitatively governs the temperature dependent bulk magnetic observables of SNMO system.

Keywords

Cite

@article{arxiv.2203.03676,
  title  = {Microscopic insights of magnetism in Sm$ _{2} $NiMnO$ _{6} $ double perovskite},
  author = {Supriyo Majumder and Malvika Tripathi and H. E. Fischer and D. O. de Souza and L. Olivi and A. K. Sinha and R. J. Choudhary and D. M. Phase},
  journal= {arXiv preprint arXiv:2203.03676},
  year   = {2022}
}

Comments

14 pages, 8 figures, and Supplementary Information