In the rapidly growing field of spintronics, simultaneous control of electronic and magnetic properties is essential, and the perspective of building novel phases is directly linked to the control of tuning parameters, for example, thickness and doping. Looking at the relevant effects in interface-driven spintronics, the reduced symmetry at a surface and interface corresponds to a severe modification of the overlap of electron orbitals, that is, to a change of electron hybridization. Here we report a chemically and magnetically sensitive depth-dependent analysis of two paradigmatic systems, namely La1−xSrxMnO3 and (Ga,Mn)As. Supported by cluster calculations, we find a crossover between surface and bulk in the electron hybridization/correla...
The impact of interfacial electronic reconstruction on the magnetic characteristics of La0.7Sr0.3CoO...
The structure of the interfaces and the mechanisms of induced spin polarization of 1D infinite and f...
Within the last twenty years, the status of the spin–orbit interaction has evolved from that of a si...
In the rapidly growing field of spintronics, simultaneous control of electronic and magnetic propert...
The possibility of controlling the interfacial properties of artificial oxide heterostructures is st...
Oral presentation given at the 20th International Conference on Magnetism, held in Barcelona (Spain)...
(Ga,Mn)As is at the forefront of spintronics research exploring the synergy of ferromagnetism with t...
The study of magnetism has been a rich playground in condensed matter physics due to the multiple me...
Perovskite manganites exhibit fascinating transport and magnetic properties, essential for fundament...
Oral presentation given at the APS March Meeting 2015, held on March 2-6th, 2015, in San Antonio (Te...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
A long-standing problem in condensed matter physics is to understand the multifaceted role of local ...
A half-metal has been defined as a material with propagating electron states at the Fermi energy onl...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Significant progress in materials science of the past decade is associated with the emerging paradig...
The impact of interfacial electronic reconstruction on the magnetic characteristics of La0.7Sr0.3CoO...
The structure of the interfaces and the mechanisms of induced spin polarization of 1D infinite and f...
Within the last twenty years, the status of the spin–orbit interaction has evolved from that of a si...
In the rapidly growing field of spintronics, simultaneous control of electronic and magnetic propert...
The possibility of controlling the interfacial properties of artificial oxide heterostructures is st...
Oral presentation given at the 20th International Conference on Magnetism, held in Barcelona (Spain)...
(Ga,Mn)As is at the forefront of spintronics research exploring the synergy of ferromagnetism with t...
The study of magnetism has been a rich playground in condensed matter physics due to the multiple me...
Perovskite manganites exhibit fascinating transport and magnetic properties, essential for fundament...
Oral presentation given at the APS March Meeting 2015, held on March 2-6th, 2015, in San Antonio (Te...
Achieving accurate description and understanding of the chemical and physical properties of complex ...
A long-standing problem in condensed matter physics is to understand the multifaceted role of local ...
A half-metal has been defined as a material with propagating electron states at the Fermi energy onl...
Thickness-driven electronic phase transitions are broadly observed in different types of functional ...
Significant progress in materials science of the past decade is associated with the emerging paradig...
The impact of interfacial electronic reconstruction on the magnetic characteristics of La0.7Sr0.3CoO...
The structure of the interfaces and the mechanisms of induced spin polarization of 1D infinite and f...
Within the last twenty years, the status of the spin–orbit interaction has evolved from that of a si...