We present a detailed study of the thermal dependence of the neutron powder diffraction (NPD) of RFe0.5Co0.5O3 perovskites (R=Tm, Er, Ho, Dy, and Tb) combined with a complete characterization of their magnetic, electric transport and ferroelectric properties. All samples are described with an orthorhombic (Pbnm) crystallographic structure. The inverse of magnetic susceptibility at high temperature shows an effective magnetic moment with contributions of high-spin Co3+, Fe3+, and the corresponding rare-earth cations (R3+) moments. Negative Curie-Weiss temperatures indicate antiferromagnetic (AFM) correlations between the magnetic ions. At low temperature, the reduced magnetic saturation values are associated with crystal-field effects on R3+...
This work details the studies of several perovskite rare earth manganite (RMnO3) systems, focusing o...
International audienceThe complex magnetic structures, spin-reorientation and associated exchange in...
SummaryWe report magnetic and electrical studies on multiferroic systems Ho0.9(RE)0.1CrO3 where RE s...
Three members of the perovskite family RFe0.5Cr0.5O3 (R = Lu,Yb, and Tm) have been synthesized and c...
International audienceIn this work we present the magnetic structures and spin reorientation (SR) tr...
Three members of the perovskite family RFe0.5Cr0.5O3 (R=Lu,Yb, and Tm) have been synthesized and cha...
Póster presentado a la 20th International Conference on Solid Compounds of Transition Elements, cele...
RCrMnO5 (R = Sm, Eu, Gd, Tb, Ho, and Er) were synthesized at high O2 pressures and 900–950 °C. Cryst...
We present a detailed study on the magnetic structure and magnetoelectric properties of several doub...
The magnetic properties of several rare earth orthoferrites single crystal samples, RFeO3, were stud...
The RMnO3 compounds adopt the orthorhombic perovskite crystal structure for large rare earth ions R,...
A comprehensive study of the magnetic phase transitions in Tb3Co has been undertaken combining diffe...
The perovskite structure is one of the most versatile ceramic host, for example for magneto electric...
Multiferroics are set of materials that exhibit both magnetic (ferro or antiferromagnetic) and ferro...
This work details the studies of several perovskite rare earth manganite (RMnO3) systems, focusing o...
International audienceThe complex magnetic structures, spin-reorientation and associated exchange in...
SummaryWe report magnetic and electrical studies on multiferroic systems Ho0.9(RE)0.1CrO3 where RE s...
Three members of the perovskite family RFe0.5Cr0.5O3 (R = Lu,Yb, and Tm) have been synthesized and c...
International audienceIn this work we present the magnetic structures and spin reorientation (SR) tr...
Three members of the perovskite family RFe0.5Cr0.5O3 (R=Lu,Yb, and Tm) have been synthesized and cha...
Póster presentado a la 20th International Conference on Solid Compounds of Transition Elements, cele...
RCrMnO5 (R = Sm, Eu, Gd, Tb, Ho, and Er) were synthesized at high O2 pressures and 900–950 °C. Cryst...
We present a detailed study on the magnetic structure and magnetoelectric properties of several doub...
The magnetic properties of several rare earth orthoferrites single crystal samples, RFeO3, were stud...
The RMnO3 compounds adopt the orthorhombic perovskite crystal structure for large rare earth ions R,...
A comprehensive study of the magnetic phase transitions in Tb3Co has been undertaken combining diffe...
The perovskite structure is one of the most versatile ceramic host, for example for magneto electric...
Multiferroics are set of materials that exhibit both magnetic (ferro or antiferromagnetic) and ferro...
This work details the studies of several perovskite rare earth manganite (RMnO3) systems, focusing o...
International audienceThe complex magnetic structures, spin-reorientation and associated exchange in...
SummaryWe report magnetic and electrical studies on multiferroic systems Ho0.9(RE)0.1CrO3 where RE s...