International audienceEpitaxial strain provides a powerful approach to manipulate physical properties of materials through rigid compression or extension of their chemical bonds via lattice-mismatch. Although symmetry-mismatch can lead to new physics by stabilizing novel interfacial structures, challenges in obtaining atomic-level structural information as well as lack of a suitable approach to separate it from the parasitical lattice-mismatch have limited the development of this field. Here, we present unambiguous experimental evidence that the symmetry-mismatch can be strongly controlled by dimensionality and significantly impact the collective electronic and magnetic functionalities in ultrathin perovskite LaCoO3/SrTiO3 heterojunctions. ...
Rotations and distortions of oxygen octahedra in perovskites play a key role in determining their fu...
Perovskite oxides exhibit an almost universal range of ground states including insulator, semiconduc...
At interfaces between conventional materials, band bending and alignment are classically controlled ...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
Epitaxial strain provides a powerful approach to manipulate physical properties of materials through...
AbstractOxide heterointerfaces constitute a rich platform for realizing novel functionalities in con...
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can...
Oxide heterointerfaces constitute a rich platform for realizing novel functionalities in condensed m...
The focus of this dissertation is on tuning electronic phase transitions in perovskite oxide heteros...
Oxide heterointerfaces constitute a rich platform for realizing novel functionalities in condensed m...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Rotations and distortions of oxygen octahedra in perovskites play a key role in determining their fu...
Perovskite oxides exhibit an almost universal range of ground states including insulator, semiconduc...
At interfaces between conventional materials, band bending and alignment are classically controlled ...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
International audienceEpitaxial strain provides a powerful approach to manipulate physical propertie...
Epitaxial strain provides a powerful approach to manipulate physical properties of materials through...
AbstractOxide heterointerfaces constitute a rich platform for realizing novel functionalities in con...
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can...
Oxide heterointerfaces constitute a rich platform for realizing novel functionalities in condensed m...
The focus of this dissertation is on tuning electronic phase transitions in perovskite oxide heteros...
Oxide heterointerfaces constitute a rich platform for realizing novel functionalities in condensed m...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Rotations and distortions of oxygen octahedra in perovskites play a key role in determining their fu...
Perovskite oxides exhibit an almost universal range of ground states including insulator, semiconduc...
At interfaces between conventional materials, band bending and alignment are classically controlled ...