The electronic properties of ultrathin epitaxial films of strontium ruthenate SrRuO3 perovskite oxide are modified by epitaxial strain, as determined by growing by pulsed laser deposition, on different the substrates. Electron transport measurements indicated that tensile strain deformation of the SrRuO3 unit cell reduces the metallicity of the material and reduces the metal-insulator-transition (MIT) temperatures. The shrinkage of the Ru-O-Ru buckling angle due to compressive strain is counterweighted by the increased overlap of the conduction Ru-4d orbitals with the O-2p ones due to the smaller interatomic distances resulting into an increased MIT temperature, i.e. a more conducting material. In the more metallic samples the core level x-...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
Transport properties of SrRuO3 thin films were studied as a function of the epitaxial strain. SrRuO3...
The ultrathin film limit has been shown to be a rich playground for unusual low-dimensional physics....
255 pagesSuperconductivity is among the most fascinating emergent states of quantum matter. Despite...
In recent decades, one of the most active and promising areas of condensed matter research has been...
We have investigated structural, transport, and optical properties of tensile strained (Sr1−xLax)3Ir...
Due to the strong lattice-property relationships which exist in complex oxide epitaxial layers, thei...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
textWe have embarked on a systematic study of novel charge states at oxide interfaces. We have perfo...
We have synthesized epitaxial Sr2IrO4 thin-films on various substrates and studied their electronic ...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
Transport properties of SrRuO3 thin films were studied as a function of the epitaxial strain. SrRuO3...
The ultrathin film limit has been shown to be a rich playground for unusual low-dimensional physics....
255 pagesSuperconductivity is among the most fascinating emergent states of quantum matter. Despite...
In recent decades, one of the most active and promising areas of condensed matter research has been...
We have investigated structural, transport, and optical properties of tensile strained (Sr1−xLax)3Ir...
Due to the strong lattice-property relationships which exist in complex oxide epitaxial layers, thei...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
textWe have embarked on a systematic study of novel charge states at oxide interfaces. We have perfo...
We have synthesized epitaxial Sr2IrO4 thin-films on various substrates and studied their electronic ...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...
International audienceTransition metal oxide thin films show versatile electric, magnetic, and therm...