English

A New Spin on Material Properties: Local Magnetic Structure in Functional and Quantum Materials

Materials Science 2025-03-20 v1

Abstract

The past few decades have made clear that the properties and performances of emerging functional and quantum materials can depend strongly on their local atomic and/or magnetic structure, particularly when details of the local structure deviate from the long-range structure averaged over space and time. Traditional methods of structural refinement (e.g. Rietveld) are typically sensitive only to the average structure, creating a need for more advanced structural probes suitable for extracting information about structural correlations on short length- and time-scales. In this Perspective, we describe the importance of local magnetic structure in several classes of emerging materials and present the magnetic pair distribution function (mPDF) technique as a powerful tool for studying short-range magnetism from neutron total-scattering data. We then provide a selection of examples of mPDF analysis applied to magnetic materials of recent technological and fundamental interest, including the antiferromagnetic semiconductor MnTe, geometrically frustrated magnets, and iron-oxide magnetic nanoparticles. The rapid development of mPDF analysis since its formalization a decade ago puts this technique in a strong position for making continued impact in the study of local magnetism in emerging materials.

Keywords

Cite

@article{arxiv.2408.05293,
  title  = {A New Spin on Material Properties: Local Magnetic Structure in Functional and Quantum Materials},
  author = {Benjamin A. Frandsen and Henry E. Fischer},
  journal= {arXiv preprint arXiv:2408.05293},
  year   = {2025}
}
R2 v1 2026-06-28T18:08:59.864Z