Magnetic structures and interplay between rare-earth Ce and Fe magnetism in single-crystal CeFeAsO
Neutron and synchrotron resonant x-ray magnetic scattering (RXMS) complemented by heat capacity and resistivity measurements reveal the evolution of the magnetic structures of Fe and Ce sublattices in a CeFeAsO single crystal. The RXMS of magnetic reflections at the Ce L sub(II) edge shows a magneti...
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Veröffentlicht in: | Physical review. B, Condensed matter and materials physics Condensed matter and materials physics, 2013-11, Vol.88 (17), Article 174517 |
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Sprache: | eng |
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Zusammenfassung: | Neutron and synchrotron resonant x-ray magnetic scattering (RXMS) complemented by heat capacity and resistivity measurements reveal the evolution of the magnetic structures of Fe and Ce sublattices in a CeFeAsO single crystal. The RXMS of magnetic reflections at the Ce L sub(II) edge shows a magnetic transition that is specific to the Ce antiferromagnetic long-range ordering at T sub(Ce) [approximate] 4 K with short-range Ce ordering above T sub(Ce), whereas neutron diffraction measurements of a few magnetic reflections indicate a transition at T* [approximate] 12 K with an unusual order parameter. Detailed order-parameter measurements on several magnetic reflections by neutrons show a weak anomaly at 4 K that we associate with the Ce ordering. The successive transitions at T sub(Ce) and T* can also be clearly identified by two anomalies in heat capacity and resistivity measurements. The higher transition temperature at T* [approximate] 12 K is mainly ascribed to Fe spin reorientation transition, below which Fe spins rotate uniformly and gradually in the ab plane. The Fe spin reorientation transition and short-range Ce ordering above T sub(Ce) reflect the strong Fe-Ce couplings prior to long-range ordering of the Ce. The evolution of the intricate magnetic structures in CeFeAsO going through T* and T sub(Ce) is proposed. |
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ISSN: | 1098-0121 1550-235X |
DOI: | 10.1103/PhysRevB.88.174517 |