Taking advantage of the large electron escape depth of soft x-ray angle resolved photoemission spectroscopy, we report electronic structure measurements of (111)-oriented [LaNiO3/LaMnO3] superlattices and LaNiO3 epitaxial films. For thin films, we observe a 3D Fermi surface with an electron pocket at the Brillouin zone center and hole pockets at the zone vertices. Superlattices with thick nickelate layers present a similar electronic structure. However, as the thickness of the LaNiO3 is reduced, the superlattices become insulating. These heterostructures do not show a marked redistribution of spectral weight in momentum space but exhibit a pseudogap of ≈50 meV
We have employed x-ray absorption spectroscopy and x-ray magnetic circular dichroism (XMCD) at the N...
The competition between collective quantum phases in materials with strongly correlated electrons de...
We have studied the optical properties of four (LaNiO3)n/(LaMnO3)2 superlattices (SL) (n=2,3,4,5) on...
Standing-wave-excited photoemission is used to study a SrTiO3/LaNiO3 superlattice. Rocking curves of...
Thin films of the correlated transition-metal oxide LaNiO3 undergo a metal–insulator transition when...
LaNiO3 (LNO) is an intriguing member of the rare-earth nickelates in exhibiting a metal-insulator tr...
High-quality lattice-matched LaNiO3/LaMnO3 superlattices with monolayer terrace structure have been ...
The nature of the metal-insulator transition in thin films and superlattices of LaNiO3 only a few un...
We investigated electronic-structure changes of tensile-strained ultrathin LaNiO3 (LNO) films from t...
The present work covers the fabrication and electrical and magnetic investigation of LaNiO3- and LaM...
The nature of the metal-insulator transition in thin films and superlattices of LaNiO3 only a few un...
Heterostructure engineering provides an efficient way to obtain several emergent phases of LaNiO3, a...
Strain control is one of the most promising avenues to search for new emergent phenomena in transiti...
The epitaxial stabilization of a single layer or superlatticestructures composed of complex oxide ma...
Recently, topological conductivity has been predicted theoretically in LaNiO3(111)-based superlattic...
We have employed x-ray absorption spectroscopy and x-ray magnetic circular dichroism (XMCD) at the N...
The competition between collective quantum phases in materials with strongly correlated electrons de...
We have studied the optical properties of four (LaNiO3)n/(LaMnO3)2 superlattices (SL) (n=2,3,4,5) on...
Standing-wave-excited photoemission is used to study a SrTiO3/LaNiO3 superlattice. Rocking curves of...
Thin films of the correlated transition-metal oxide LaNiO3 undergo a metal–insulator transition when...
LaNiO3 (LNO) is an intriguing member of the rare-earth nickelates in exhibiting a metal-insulator tr...
High-quality lattice-matched LaNiO3/LaMnO3 superlattices with monolayer terrace structure have been ...
The nature of the metal-insulator transition in thin films and superlattices of LaNiO3 only a few un...
We investigated electronic-structure changes of tensile-strained ultrathin LaNiO3 (LNO) films from t...
The present work covers the fabrication and electrical and magnetic investigation of LaNiO3- and LaM...
The nature of the metal-insulator transition in thin films and superlattices of LaNiO3 only a few un...
Heterostructure engineering provides an efficient way to obtain several emergent phases of LaNiO3, a...
Strain control is one of the most promising avenues to search for new emergent phenomena in transiti...
The epitaxial stabilization of a single layer or superlatticestructures composed of complex oxide ma...
Recently, topological conductivity has been predicted theoretically in LaNiO3(111)-based superlattic...
We have employed x-ray absorption spectroscopy and x-ray magnetic circular dichroism (XMCD) at the N...
The competition between collective quantum phases in materials with strongly correlated electrons de...
We have studied the optical properties of four (LaNiO3)n/(LaMnO3)2 superlattices (SL) (n=2,3,4,5) on...