International audienceMagnetite, Fe3O4 , 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 ...
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 TV amp; 8764; 125 K, ...
To elucidate charge and orbital order below the Verwey transition temperature TV amp; 8764; 125 K, ...
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...
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 ...
To elucidate charge and orbital order below the Verwey transition temperature TV amp; 8764; 125 K, ...
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 TV amp; 8764; 125 K, ...
To elucidate charge and orbital order below the Verwey transition temperature TV amp; 8764; 125 K, ...
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...
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 ...
To elucidate charge and orbital order below the Verwey transition temperature TV amp; 8764; 125 K, ...
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 TV amp; 8764; 125 K, ...
To elucidate charge and orbital order below the Verwey transition temperature TV amp; 8764; 125 K, ...