Spin-reorientation magnetic transitions in Mn-doped SmFeO3

Spin reorientation is a magnetic phase transition in which rotation of the magnetization vector with respect to the crystallographic axes occurs upon a change in the temperature or magnetic field. For example, SmFeO3 shows a magnetization rotation from the c axis above 480 K to the a axis below 450 ...

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Veröffentlicht in:IUCrJ 2017-09, Vol.4 (5), p.598-603
Hauptverfasser: Kang, Jian, Yang, Yali, Qian, Xiaolong, Xu, Kai, Cui, Xiaopeng, Fang, Yifei, Chandragiri, Venkatesh, Kang, Baojuan, Chen, Bin, Stroppa, Alessandro, Cao, Shixun, Zhang, Jincang, Ren, Wei
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Sprache:eng
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Zusammenfassung:Spin reorientation is a magnetic phase transition in which rotation of the magnetization vector with respect to the crystallographic axes occurs upon a change in the temperature or magnetic field. For example, SmFeO3 shows a magnetization rotation from the c axis above 480 K to the a axis below 450 K, known as the Γ4 → Γ2 transition. This work reports the successful synthesis of the new single-crystal perovskite SmFe0.75Mn0.25O3 and finds interesting spin reorientations above and below room temperature. In addition to the spin reorientation of the Γ4 → Γ2 magnetic phase transition observed at around TSR2 = 382 K, a new spin reorientation, Γ2 → Γ1, was seen at around TSR1 = 212 K due to Mn doping, which could not be observed in the parent rare earth perovskite compound. This unexpected spin configuration has complete antiferromagnetic order without any canting-induced weak ferromagnetic moment, resulting in zero magnetization in the low-temperature regime. M-T and M-H measurements have been made to study the temperature and magnetic-field dependence of the observed spin reorientation transitions.
ISSN:2052-2525
2052-2525
DOI:10.1107/S205225251700793X