Orthorhombic LaErO3 and cubic (La0.5 Ln 0.5)2O3 oxides (Ln: Er, Dy) were examined by neutron powder diffraction between 1.5 K and 15 K in order to investigate their crystallographic and magnetic structures. At 1.5 K both LaErO3 and (La0.5Er0.5)2O3 display a magnetic moments ordering, whereas for (La0.5Dy0.5)2O3 only short range magnetic correlations can be argued, suggesting a possible magnetic moments ordering at lower temperature. LaErO3 is characterized by a magnetic wavevector k = (0, 0, 0) and forms an antiferromagnetic G x C y A z-type structure belonging to the Shubnikov group with a total magnetic moment of 6.78(3) ? B. The antiferromagnetic structure of (La0.5Er0.5)2O3 is similar to the one typical of Er2O3, with a total magnetic moment of 4.28(2) ? B at both different magnetic sites; it is characterized by k = (0, 0, 0) and belongs to the magnetic Shubnikov group.

New insights into the magnetic properties of LaErO3, (La0.5Er0.5)2O3 and (La0.5Dy0.5)2O3 oxides

Martinelli A;Artini C;
2016

Abstract

Orthorhombic LaErO3 and cubic (La0.5 Ln 0.5)2O3 oxides (Ln: Er, Dy) were examined by neutron powder diffraction between 1.5 K and 15 K in order to investigate their crystallographic and magnetic structures. At 1.5 K both LaErO3 and (La0.5Er0.5)2O3 display a magnetic moments ordering, whereas for (La0.5Dy0.5)2O3 only short range magnetic correlations can be argued, suggesting a possible magnetic moments ordering at lower temperature. LaErO3 is characterized by a magnetic wavevector k = (0, 0, 0) and forms an antiferromagnetic G x C y A z-type structure belonging to the Shubnikov group with a total magnetic moment of 6.78(3) ? B. The antiferromagnetic structure of (La0.5Er0.5)2O3 is similar to the one typical of Er2O3, with a total magnetic moment of 4.28(2) ? B at both different magnetic sites; it is characterized by k = (0, 0, 0) and belongs to the magnetic Shubnikov group.
2016
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
magnetic structures
neutron diffraction
perovskite
rare earth oxides
Rietveld refinement
soft modes
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/324180
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