Influence of interstitial Mn on local structure and magnetism in Mn$_{1+\delta}$Sb
Abstract
We report x-ray total scattering and pair distribution function (PDF) studies of the structural relaxation around interstitial manganese (Mn) in ferromagnetic MnSb () alloys, guided by density functional theory (DFT). Refinements to the experimental PDF using a crystallographically constrained structural model indicate an expansion in the equatorial plane of the MnSb trigonal bipyramidal site, which introduces significant positional disorder in addition to the nominally-random occupation of interstitial voids. Observation of a weak diffuse signal near the symmetry-forbidden (001) reflection position is indicative of correlated disorder from the clustering of Mn. Density functional relaxation of supercells approximating the , and compositions provides improved models that accurately describe the short-range structural distortions captured in the PDFs. Such structural relaxation increases the DFT calculated moment on Mn, which aligns antiparallel to the primary Mn moments, but leads to insubstantial changes in the average Mn and Sb moments and moments of Mn and Sb proximal to interstitials, thus providing a more accurate description of the observed bulk magnetic properties.
Keywords
Cite
@article{arxiv.1507.01979,
title = {Influence of interstitial Mn on local structure and magnetism in Mn$_{1+\delta}$Sb},
author = {Joshua A. Kurzman and Andrew J. Martinolich and James R. Neilson},
journal= {arXiv preprint arXiv:1507.01979},
year = {2015}
}
Comments
10 pages, 9 figures. Supplemental material available upon request