Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge and orbitally ordered. Many of the recent experimental claims of such ordering rely on resonant soft x-ray diffraction at the oxygen K and iron L edges. We have reexamined this system and undertaken soft x-ray diffraction experiments on a high-quality single crystal. Contrary to previous claims in the literature, we show that the intensity observed at the Bragg forbidden (00 1 2) c reflection can be explained purely in terms of the low-temperature structural displacements around the resonant atoms. This does not necessarily mean that magnetite is not charge or orbitally ordered but rather that the present sensitivity of resonant soft x-ray expe...
To elucidate charge and orbital order below the Verwey transition temperature T-V similar to 125 K, ...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
5 pagesInternational audienceMagnetite is one of the oldest known magnetic materials, but questions ...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
To elucidate charge and orbital order below the Verwey transition temperature T-V similar to 125 K, ...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
International audienceMagnetite, Fe3O4 , displays a highly complex low-temperature crystal structure...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
Magnetite, Fe3 O4, displays a highly complex low-temperature crystal structure that may be charge an...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
5 pagesInternational audienceMagnetite is one of the oldest known magnetic materials, but questions ...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
13 pagesInternational audienceWe propose a model for the Fe atomic displacements in the low-temperat...
To elucidate charge and orbital order below the Verwey transition temperature T-V similar to 125 K, ...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...
Powder x-ray diffraction patterns of magnetite (Fe3O 4) have been recorded at 90 K, below the Verwey...