The structural and magnetic properties of LaMnO3/LaFeO3 (LMO/LFO) heterostructures are characterized using a combination of scanning transmission electron microscopy, electron energy-loss spectroscopy, bulk magnetometry, and resonant x-ray reflectivity. Unlike the relatively abrupt interface when LMO is deposited on top of LFO, the interface with reversed growth order shows significant cation intermixing of Mn3+ and Fe3+, spreading ∼8 unit cells across the interface. The asymmetric interfacial chemical profiles result in distinct magnetic properties. The bilayer with abrupt interface shows a single magnetic hysteresis loop with strongly enhanced coercivity, as compared to the LMO plain film. However, the bilayer with intermixed interface sh...
Engineering of emergent properties at oxide interfaces is an exciting route towards realizing oxide ...
The extent of interfacial charge transfer and the resulting impact on magnetic interactions were inv...
The interface of perovskite oxides has recently become a platform to functionalize novel physical pr...
International audienceThe functional properties of oxide heterostructures ultimately rely on how the...
The functional properties of oxide heterostructures ultimately rely on how the electronic and struct...
The interfacial coupling between electron correlated complex oxides opens a promising avenue for ach...
The impact of interfacial electronic reconstruction on the magnetic characteristics of La0.7Sr0.3CoO...
Transition metal oxides (TMO's) show functionalities which make them promising candidates for sensor...
Transition metal oxides (TMO's) show functionalities which make them promising candidates for sensor...
Novel phenomena and functionalities at epitaxial complex oxide heterostructures have been attracting...
Abstract A variety of emergent phenomena are enabled by interface engineering in the complex oxides ...
At interfaces between complex oxides, electronic, orbital and magnetic reconstructions may produce s...
When a thin film thickness becomes ultrathin, the magnetic properties of the thin film can be altere...
The ability to create atomically perfect, epitaxial heterostructures of correlated complex perovskit...
The possibility of controlling the interfacial properties of artificial oxide heterostructures is st...
Engineering of emergent properties at oxide interfaces is an exciting route towards realizing oxide ...
The extent of interfacial charge transfer and the resulting impact on magnetic interactions were inv...
The interface of perovskite oxides has recently become a platform to functionalize novel physical pr...
International audienceThe functional properties of oxide heterostructures ultimately rely on how the...
The functional properties of oxide heterostructures ultimately rely on how the electronic and struct...
The interfacial coupling between electron correlated complex oxides opens a promising avenue for ach...
The impact of interfacial electronic reconstruction on the magnetic characteristics of La0.7Sr0.3CoO...
Transition metal oxides (TMO's) show functionalities which make them promising candidates for sensor...
Transition metal oxides (TMO's) show functionalities which make them promising candidates for sensor...
Novel phenomena and functionalities at epitaxial complex oxide heterostructures have been attracting...
Abstract A variety of emergent phenomena are enabled by interface engineering in the complex oxides ...
At interfaces between complex oxides, electronic, orbital and magnetic reconstructions may produce s...
When a thin film thickness becomes ultrathin, the magnetic properties of the thin film can be altere...
The ability to create atomically perfect, epitaxial heterostructures of correlated complex perovskit...
The possibility of controlling the interfacial properties of artificial oxide heterostructures is st...
Engineering of emergent properties at oxide interfaces is an exciting route towards realizing oxide ...
The extent of interfacial charge transfer and the resulting impact on magnetic interactions were inv...
The interface of perovskite oxides has recently become a platform to functionalize novel physical pr...