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Neutron Diffraction Investigation of the DyFe11Ti Magnetic Structure and Its Spin Reorientations

Authors :
Isnard, Olivier
Kinast, Eder J.
Source :
Engineering / Chinese Academy of Engineering; February 2020, Vol. 6 Issue: 2 p154-158, 5p
Publication Year :
2020

Abstract

In this article, we report on the magnetic structure of DyFe11Ti and its thermal evolution as probed by neutron powder diffraction. A thermodiffraction technique was used to follow the temperature dependence of the magnetic moments, as well as their orientation. The Dy and Fe moments were coupled to each other in an antiparallel manner to form a ferrimagnet, where the easy magnetization direction at 2 K was the [110] axis in the basal (a, b) plane. This magnetic structure underwent two successive spin reorientation phenomena with increasing temperature. A large Dy magnetic moment of 9.7 Bohr magneton (μB) was obtained at low temperatures, and the magnitude decreased rapidly to 7.5μBat 200 K. The largest Fe magnetic moment was observed on the Fe 8iposition. A ThMn12-type crystal structure was preserved in the studied temperature range, despite the large changes of the magnetic structure. A sharp tilt was observed at the first-order spin reorientation, TSR1; the angle between the easy magnetization axis and the crystal caxis was reduced from 90° at 2 K to about 20° at 200 K (where cis the easy axis above 200 K); and the Dy and Fe magnetic moments maintained an antiparallel coupling.

Details

Language :
English
ISSN :
20958099 and 20960026
Volume :
6
Issue :
2
Database :
Supplemental Index
Journal :
Engineering / Chinese Academy of Engineering
Publication Type :
Periodical
Accession number :
ejs51602206
Full Text :
https://doi.org/10.1016/j.eng.2019.11.009