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FeTi$_2$O$_5$: a spin Jahn-Teller transition enhanced by cation substitution

Published 14 Jun 2019 in cond-mat.str-el | (1906.06219v2)

Abstract: We have used muon-spin rotation, heat capacity and x-ray diffraction measurements in combination with density functional theory and dipole field calculations to investigate the crystal and magnetic structure of FeTi$2$O$_5$. We observe a long range ordered state below $T{\rm N}$=41.8(5) K with indications of significant correlations existing above this temperature. We determine candidate muon stopping sites in this compound, and find that our data are consistent with the spin Jahn-Teller driven antiferromagnetic ground state with $\boldsymbol{k}$=(1/2,1/2,0) reported for CoTi$2$O$_5$ ($T{\rm N}$=26 K). By comparing our data with calculated dipolar fields we can restrict the possible moment size and directions of the Fe${2+}$ ions.

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