In this paper, a remote O2 ion source is used for the formation of nano-oxide layers. The oxidation efficiency was measured in CoFe-oxide films, and a decrease of the oxide layer with the pan angle and the oxidation pressure is observed. For the same oxidation pressure, the oxidation efficiency depends on the O2 content in the Ar-O2 plasma. These results were applied in optimizing the fabrication of Al2O3 barrier for tunnel junctions. This method was also used to fabricate junctions with Fe-oxide layers inserted at the Al2O3-CoFe interface. TEM and magnetization data indicate that after anneal at 385°C, a homogeneous ferromagnetic Fe-oxide layer (Fe3O4?) is formed
International audienceMagnetic tunnel junctions have attracted much attention both for their interes...
Ion beam bombardment is a useful surface modification method in tailoring the microstructure and mag...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...
In this paper, a remote O2 ion source is used for the formation of nano-oxide layers. The oxidation ...
We show that over-oxidn. of sub-nm thin Al2O3 barriers of magnetic tunnel junctions can be obsd. in ...
Co/Al2O3/NiFe and CO/Al2O3/Co tunnel junctions were fabricated by a radio frequency magnetron sputte...
In this paper we present results on how the plasma oxidation of a thin (1.5 nm) Al layer proceeds. T...
The oxidation process of Co/AlOx/Co magnetic tunnel junctions has been investigated by photoconducta...
Magnetic tunnel junctions have applications in a range of spin-electronic devices. The functional pr...
The structural and nanochemical properties of thin AlOx layers are decisive for the performance of a...
Spin tunnel junctions fabricated with one interposed Fe–FeOx layer between the Al2O3 barrier and the...
An optical polarization modulation technique was adapted to provide a simple, fast, and flexible met...
10 pagesInternational audienceWe report on the evolution of the structure and composition of a Pt(3 ...
The thesis aims to exploit properties of thin films for applications such as spintronics, UV detecti...
We studied CO oxidation on FeO(1 1 1) films on Pt(1 1 1) at submonolayer oxide coverages at ultrahig...
International audienceMagnetic tunnel junctions have attracted much attention both for their interes...
Ion beam bombardment is a useful surface modification method in tailoring the microstructure and mag...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...
In this paper, a remote O2 ion source is used for the formation of nano-oxide layers. The oxidation ...
We show that over-oxidn. of sub-nm thin Al2O3 barriers of magnetic tunnel junctions can be obsd. in ...
Co/Al2O3/NiFe and CO/Al2O3/Co tunnel junctions were fabricated by a radio frequency magnetron sputte...
In this paper we present results on how the plasma oxidation of a thin (1.5 nm) Al layer proceeds. T...
The oxidation process of Co/AlOx/Co magnetic tunnel junctions has been investigated by photoconducta...
Magnetic tunnel junctions have applications in a range of spin-electronic devices. The functional pr...
The structural and nanochemical properties of thin AlOx layers are decisive for the performance of a...
Spin tunnel junctions fabricated with one interposed Fe–FeOx layer between the Al2O3 barrier and the...
An optical polarization modulation technique was adapted to provide a simple, fast, and flexible met...
10 pagesInternational audienceWe report on the evolution of the structure and composition of a Pt(3 ...
The thesis aims to exploit properties of thin films for applications such as spintronics, UV detecti...
We studied CO oxidation on FeO(1 1 1) films on Pt(1 1 1) at submonolayer oxide coverages at ultrahig...
International audienceMagnetic tunnel junctions have attracted much attention both for their interes...
Ion beam bombardment is a useful surface modification method in tailoring the microstructure and mag...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...