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Determination of the ferrimagnetic structure of monoclinic TbFe2_{2}D4.2_{4.2} deuteride and its evolution versus temperature and high magnetic field

Published 24 Aug 2026 in cond-mat.mtrl-sci | (2608.23346v1)

Abstract: The magnetic properties of monoclinic TbFe<em>2<em>{2}D</em>4.2</em>{4.2} have been investigated by combining different magnetic measurements, including those involving a high pulsed magnetic field, with neutron diffraction experiments versus temperature and applied field. TbFe<em>2<em>{2}D</em>4.2</em>{4.2} displays a ferrimagnetic ground state with M<em>Tb<em>{Tb} = 8.2(2) μμ{B}andM and M{Fe}=2.1(2) = 2.1(2) μ</em>B</em>{B}. At 4.2 K a large magnetic anisotropy related to the Tb moments is observed, as saturation is not reached at 50 T. In addition, two metamagnetic transitions are observed for fields of 3 and 29 T. Upon heating, the Tb moment decreases progressively whereas the Fe moment remains constant up to 150 K. At 160 K both Tb and Fe moments sharply decrease, and a 0.38% contraction of the cell volume is observed due to an itinerant electron metamagnetic behavior of the Fe sublattice. This transition temperature is 76 K higher than that of YFe<em>2<em>{2}D</em>4.2</em>{4.2} due to an increase in cell volume, as well as exchange interactions between the Fe and Tb moments. The deuteride becomes paramagnetic above 220 K.

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