Collinear antiferromagnetism in trigonal SrMnAs revealed by single-crystal neutron diffraction
arXiv:1605.02004 · doi:10.1088/0953-8984/29/3/035802
Abstract
Fe pnictides and related materials have been a topic of intense research for understanding the complex interplay between magnetism and superconductivity. Here we report on the magnetic structure of SrMnAs that crystallizes in a trigonal structure () and undergoes an antiferromagnetic (AFM) transition at K. The magnetic susceptibility remains nearly constant at temperatures with whereas it decreases significantly with . This shows that the ordered Mn moments lie in the -plane instead of aligning along the -axis as in tetragonal BaMnAs. Single-crystal neutron diffraction measurements on SrMnAs demonstrate that the Mn moments are ordered in a collinear Néel AFM phase with AFM alignment between a moment and all nearest neighbor moments in the basal plane and also perpendicular to it. Moreover, quasi-two-dimensional AFM order is manifested in SrMnAs as evident from the temperature dependence of the order parameter.
5 pages, 3 figures
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