paper

Spin-Lattice Coupling and Frustrated Magnetism in Fe-doped Hexagonal LuMnO3

arXiv:1512.07539 · doi:10.1209/0295-5075/110/37007

Abstract

Strong spin-lattice coupling and prominent frustration effects observed in the 50 Fe-doped frustrated hexagonal ()LuMnO are reported. A Néel transition at 112~K and a possible spin re-orientation transition at 55~K are observed in the magnetization data. From neutron powder diffraction data, the nuclear structure at and below 300~K was refined in polar space group. While the magnetic structure of LuMnO belongs to the () representation, that of LuFeMnO belongs to () which is supported by the strong intensity for the reflection and also judging by the presence of spin-lattice coupling. The refined atomic positions for Lu and Mn/Fe indicate significant atomic displacements at and which confirms strong spin-lattice coupling. Our results complement the discovery of room temperature multiferroicity in thin films of LuFeO and would give impetus to study LuFeMnO systems as potential multiferroics where electric polarization is linked to giant atomic displacements.

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