Electronic and magnetic properties of the charge ordered phase of LuFe2O4 are investigated by means of x-ray spectroscopic and theoretical electronic structure approaches. LuFe2O4 is a compound showing fascinating magnetoelectric coupling via charge ordering. Here, we identify the spin ground state of LuFe2O4 in the charge ordered phase to be a 2:1 ferrimagnetic configuration, ruling out a frustrated magnetic state. An enhanced orbital moment may enhance the magnetoelectric coupling. Furthermore, we determine the densities of states and the corresponding correlation potentials by means of x-ray photoelectron and emission spectroscopies, as well as electronic structure calculations
We investigated the orbital anisotropy of LuFe2O4 using the Fe L-2,L-3- and O K-edge x-ray absorptio...
LuFe2O4 belongs to the rare-earth ferrite family RFe2O4 (R=Dy to Lu, Y), whose structure can be desc...
International audienceBranded for its potential electronic ferroelectricity, charge-ordered LuFe2O4 ...
Electronic and magnetic properties of the charge ordered phase of LuFe2O4 are investigated by means ...
The coupling between charge and spin orderings in strongly correlated systems plays a crucial role i...
This thesis is a detailed study of the magnetic, structural and orbital order parameters of the cand...
X- ray scattering by multiferroic LuFe2O4 is reported. Below 320 K, superstructure reflections indic...
X- ray scattering by multiferroic LuFe2O4 is reported. Below 320 K, superstructure reflections indic...
We examine the interplay between quantum charge fluctuations and magnetic ordering in mult...
Geometrical frustration of the Fe ions in LuFe2O4 leads to intricate charge and magnetic order and a...
We investigated the series of temperature and field-driven transitions in LuFe2O4 by optical and Mos...
We investigated the series of temperature and field-driven transitions in LuFe2O4 by optical and Mos...
International audienceMagnetic-electronic hyperfine interaction parameters of spectral components ar...
The mechanisms producing strong coupling between electric and magnetic order in multiferroics are no...
We investigated the orbital anisotropy of LuFe2O4 using the Fe L-2,L-3- and O K-edge x-ray absorptio...
LuFe2O4 belongs to the rare-earth ferrite family RFe2O4 (R=Dy to Lu, Y), whose structure can be desc...
International audienceBranded for its potential electronic ferroelectricity, charge-ordered LuFe2O4 ...
Electronic and magnetic properties of the charge ordered phase of LuFe2O4 are investigated by means ...
The coupling between charge and spin orderings in strongly correlated systems plays a crucial role i...
This thesis is a detailed study of the magnetic, structural and orbital order parameters of the cand...
X- ray scattering by multiferroic LuFe2O4 is reported. Below 320 K, superstructure reflections indic...
X- ray scattering by multiferroic LuFe2O4 is reported. Below 320 K, superstructure reflections indic...
We examine the interplay between quantum charge fluctuations and magnetic ordering in mult...
Geometrical frustration of the Fe ions in LuFe2O4 leads to intricate charge and magnetic order and a...
We investigated the series of temperature and field-driven transitions in LuFe2O4 by optical and Mos...
We investigated the series of temperature and field-driven transitions in LuFe2O4 by optical and Mos...
International audienceMagnetic-electronic hyperfine interaction parameters of spectral components ar...
The mechanisms producing strong coupling between electric and magnetic order in multiferroics are no...
We investigated the orbital anisotropy of LuFe2O4 using the Fe L-2,L-3- and O K-edge x-ray absorptio...
LuFe2O4 belongs to the rare-earth ferrite family RFe2O4 (R=Dy to Lu, Y), whose structure can be desc...
International audienceBranded for its potential electronic ferroelectricity, charge-ordered LuFe2O4 ...