Structural transformation and magnetic competition in Yb(Mn1-xFex)O3
Abstract
Structural and magnetic properties of the Yb(Mn1-xFex)O3 (0⩽x⩽1) system have been systematically investigated. Initial samples were prepared via a sol-gel method. A pure hexagonal phase was only obtained for samples with x⩽0.5 . With high-pressure annealing, a pure orthorhombic perovskite phase was achieved for all the compositions. The Fe57 Mössbauer spectrum for x=0.5 shows that only Fe3+ ions exist in the system; there was no evidence of chemical inhomogeneities. With increasing x , the Néel temperature TN increases for both hexagonal and orthorhombic phases. The orthorhombic Yb(Mn0.5Fe0.5)O3 shows an interesting weak ferromagnetic state in the temperature range of 239-298K , the ferromagnetism disappearing abruptly on cooling below Tt=239K . The transition at Tt appears to be a reorientation of the spin axis of a type- G antiferromagnetic order from the orthorhombic a axis to the b axis in the (010) plane.
- Publication:
-
Physical Review B
- Pub Date:
- November 2007
- DOI:
- Bibcode:
- 2007PhRvB..76q4405H
- Keywords:
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- 75.10.-b;
- 75.30.-m;
- 71.70.Ej;
- 64.60.-i;
- General theory and models of magnetic ordering;
- Intrinsic properties of magnetically ordered materials;
- Spin-orbit coupling Zeeman and Stark splitting Jahn-Teller effect;
- General studies of phase transitions