Author:
Frandsen Benjamin A.,Billinge Simon J. L.
Abstract
An experimental determination of the magnetic pair distribution function (mPDF) defined in an earlier paper [Frandsenet al.(2014).Acta Cryst.A70, 3–11] is presented for the first time. The mPDF was determined from neutron powder diffraction data from a reactor and a neutron time-of-flight total scattering source on a powder sample of the antiferromagnetic oxide MnO. A description of the data treatment that allowed the measured mPDF to be extracted and then modelled is provided and utilized to investigate the low-temperature structure of MnO. Atomic and magnetic co-refinements support the scenario of a locally monoclinic ground-state atomic structure, despite the average structure being rhombohedral, with the mPDF analysis successfully recovering the known antiferromagnetic spin configuration. The total scattering data suggest a preference for the spin axis to lie along the pseudocubic [10{\overline 1}] direction. Finally,r-dependent PDF refinements indicate that the local monoclinic structure tends toward the average rhombohedralR{\overline 3}msymmetry over a length scale of approximately 100 Å.
Publisher
International Union of Crystallography (IUCr)
Subject
Inorganic Chemistry,Physical and Theoretical Chemistry,Condensed Matter Physics,General Materials Science,Biochemistry,Structural Biology
Cited by
46 articles.
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