"Spinorbitronics" is a fast-growing field of research that aims at proposing new devices taking advantage of the spin-orbit interaction in order to improve the performance in regard to conventional electronic devices, especially in terms of energy consumption. During this thesis, we performed numerical calculations based on density-functional theory (DFT) in order to better describe and understand the "Rashba"-like effects arising from the spin-orbit interaction in different transition metal oxides and their interfaces. These ab initio calculations have been extended by calculations based on tight-binding models or by the development of Hamiltonians based on the theory of invariants, all of this, in the aim of carrying out a deeper analysis...
Spin-to-charge current interconversion in non-magnetic systems is based on the spin-orbit coupling. ...
Rashba-like spin-orbit interaction at oxide heterostructures emerges as a much sought-after feature ...
International audienceIn transition metal perovskites (ABO3) most physical properties are tunable by...
"Spinorbitronics" is a fast-growing field of research that aims at proposing new devices taking adva...
La "spinorbitronique" est un domaine de recherche en pleine expansion qui pourrait permettre de prop...
An emerging field of spintronics, called spin-orbitronics, enables the inter-conversion between char...
The anomalous transport properties of transition metal oxides, in particular the surface of SrTiO₃ o...
Within the last twenty years, the status of the spinorbit interaction has evolved from that of a sim...
In transition-metal perovskites (ABO_3) most physical properties are tunable by structural parameter...
Transition metal oxides possess a broad range of functionalities (superconductivity, magnetism, ferr...
The momentum-dependent Rashba and Dresselhaus spin-splitting has gained much attention for its highl...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
peer reviewedThe electronic structure of SrTiO3 and SrHfO3 (001) surfaces with oxygen vacancies is s...
International audienceThe transition metal oxide family harbors various types of materials of intere...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
Spin-to-charge current interconversion in non-magnetic systems is based on the spin-orbit coupling. ...
Rashba-like spin-orbit interaction at oxide heterostructures emerges as a much sought-after feature ...
International audienceIn transition metal perovskites (ABO3) most physical properties are tunable by...
"Spinorbitronics" is a fast-growing field of research that aims at proposing new devices taking adva...
La "spinorbitronique" est un domaine de recherche en pleine expansion qui pourrait permettre de prop...
An emerging field of spintronics, called spin-orbitronics, enables the inter-conversion between char...
The anomalous transport properties of transition metal oxides, in particular the surface of SrTiO₃ o...
Within the last twenty years, the status of the spinorbit interaction has evolved from that of a sim...
In transition-metal perovskites (ABO_3) most physical properties are tunable by structural parameter...
Transition metal oxides possess a broad range of functionalities (superconductivity, magnetism, ferr...
The momentum-dependent Rashba and Dresselhaus spin-splitting has gained much attention for its highl...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
peer reviewedThe electronic structure of SrTiO3 and SrHfO3 (001) surfaces with oxygen vacancies is s...
International audienceThe transition metal oxide family harbors various types of materials of intere...
In this work, we investigate electronic and magnetic phenomena in thin films and heterostructures of...
Spin-to-charge current interconversion in non-magnetic systems is based on the spin-orbit coupling. ...
Rashba-like spin-orbit interaction at oxide heterostructures emerges as a much sought-after feature ...
International audienceIn transition metal perovskites (ABO3) most physical properties are tunable by...