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First-order nature of the ferromagnetism in CeIn2 investigated using muon spin rotation and by systematic substitution of la for Ce

Abstract: The nature of the first-order ferromagnetic transition in binary CeIn2 alloy is investigated by muon spin rotation (?SR) measurements and chemical substitution of Ce by La in the La1?xCexIn2 (0.9?x?1.0) series of alloys. Below 22 K, the analysis of ?SR spectra shows two spin precession frequencies associated with the local field at the muon site created by the surrounding ferromagnetic ordered magnetic moments. These frequencies abruptly disappear above TC, indicating the first-order character of this transition, as previously reported. For temperatures between 22 and 24 K, the shape of the ?SR spectra indicates the existence of an additional magnetic phase with features of an incommensurate magnetic structure. The presence of this magnetic phase is supported by dc(ac)-magnetic susceptibility and specific-heat results obtained on chemical diluted samples, which also show a magnetic contribution above the ferromagnetic transition. The combined analysis of these results clarifies the first-order character of the ferromagnetic transition in CeIn2, based on the existence of an intermediate magnetic phase between the paramagnetic and ferromagnetic states.

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 Autoría: Rojas D.P., Espeso J.I., Rodríguez Fernández J., Gómezsal J.C., Rusu C., Andreica D., Dudric R., Amato A.,

 Fuente: Physical Review B, 2011, 84, 024403

Editorial: American Physical Society

 Año de publicación: 2011

Nº de páginas: 7

Tipo de publicación: Artículo de Revista

 DOI: 10.1103/PhysRevB.84.024403

ISSN: 1098-0121,1550-235X,2469-9950,2469-9969

Proyecto español: MAT2008-06542-C04

Url de la publicación: https://doi.org/10.1103/PhysRevB.84.024403