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Complex magnetic phase diagrams in Tb2IrAl4Ge2 and Er2IrAl4Ge2

Karolina Gornicka, Matthew S. Cook, Brenden R. Ortiz, Andrew D. Christianson, Andrew F. May

cond-mat.mtrl-sciarXiv:2610.01714

Abstract

We report the synthesis and comprehensive investigation of single-crystalline Tb2IrAl4Ge2 and Er2IrAl4Ge2, the first Ir-based members of the Ln2MAl4Ge2 family. Both compounds crystallize in the tetragonal Tb2NiAl4Ge2-type structure (space group I4/mmm) and exhibit easy-axis magnetic anisotropy with the crystallographic c axis as the preferred magnetization direction. Tb2IrAl4Ge2 undergoes antiferromagnetic ordering below TN = 25 K and develops a sequence of field-induced metamagnetic transitions accompanied by pronounced magnetotransport anomalies, including a nonlinear Hall response. In contrast, Er2IrAl4Ge2 exhibits three successive zero-field magnetic transitions and a substantially richer low-temperature magnetic phase diagram comprising multiple competing field-induced phases confined to relatively modest magnetic fields. The differences between the Tb- and Er-based compounds demonstrate the wide range of magnetic behavior that can be realized within the Tb2NiAl4Ge2-type structure. More broadly, the successful realization of Ir-based Ln2MAl4Ge2 compounds considerably expands the accessible chemical space of this family and opens a route toward the exploration of related 4d- and 5d-based aluminogermanides.

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