Magnetostructural transition in Fe{sub 5}SiB{sub 2} observed with neutron diffraction

The crystal and magnetic structure of Fe{sub 5}SiB{sub 2} has been studied by a combination of X-ray and neutron diffraction. Also, the magnetocrystalline anisotropy energy constant has been estimated from magnetisation measurements. High quality samples have been prepared using high temperature syn...

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Veröffentlicht in:Journal of solid state chemistry 2016-03, Vol.235
Hauptverfasser: Cedervall, Johan, Kontos, Sofia, Hansen, Thomas C., Balmes, Olivier, Martinez-Casado, Francisco Javier, Matej, Zdenek, Beran, Premysl, Svedlindh, Peter, Gunnarsson, Klas, Sahlberg, Martin
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Sprache:eng
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Zusammenfassung:The crystal and magnetic structure of Fe{sub 5}SiB{sub 2} has been studied by a combination of X-ray and neutron diffraction. Also, the magnetocrystalline anisotropy energy constant has been estimated from magnetisation measurements. High quality samples have been prepared using high temperature synthesis and subsequent heat treatment protocols. The crystal structure is tetragonal within the space group I4/mcm and the compound behaves ferromagnetically with a Curie temperature of 760 K. At 172 K a spin reorientation occurs in the compound and the magnetic moments go from aligning along the c-axis (high T) down to the ab-plane (low T). The magnetocrystalline anisotropy energy constant has been estimated to 0.3 MJ/m{sup 3} at 300 K. - Highlights: • The crystal and magnetic structure of Fe{sub 5}SiB{sub 2} has been studied by diffraction. • At 172 K a spin reorientation occurs in the compound. • The magnetic moments are aligned along the c-axis at high T. • The magnetic moments are aligned in the ab-plane at low T. • The magnetocrystalline anisotropy energy constant has been estimated to 0.3 MJ/m{sup 3}.
ISSN:0022-4596
1095-726X
DOI:10.1016/J.JSSC.2015.12.016