Oxygen implantation in ferromagnetic Co thin films is shown to be an advantageous route to improving the magnetic properties of Co–CoO systems by forming multiple nanoscaled ferromagnetic/antiferromagnetic interfaces homogeneously distributed throughout the layer. By properly designing the implantation conditions (energy and fluence) and the structure of the films (capping, buffer, and Co layer thickness), relatively uniform O profiles across the Co layer can be achieved using a single-energy ion implantation approach. This optimized configuration results in enhanced exchange bias loop shifts, improved loop homogeneity, increased blocking temperature, reduced relative training effects and increased retained remanence in the trained state wi...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...
The influence of the partial pressure of oxygen (PO2) on the microstructural and magnetic properties...
Polar oxide interfaces are an important focus of research due to their novel functionality which is ...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
Exchange bias (EB) is the interfacial coupling between a ferromagnet (FM) and an antiferromagnet (AF...
An original approach for the formation of an exchange bias system is presented. Alternative to surfa...
We use ion implantation as a new approach to build an anti-ferromagnetic (AFM) cluster embedded exch...
A series of ferromagnetic Ni 80Fe20(55 nm)/antiferromagnetic CoO (25 to 200 nm)/ferromagnetic Co (55...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Ion beam bombardment is a useful surface modification method in tailoring the microstructure and mag...
A series of ferromagnetic Ni80Fe20(55 nm)/antiferromagnetic CoO (25 to 200 nm)/ferromagnetic Co (55 ...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...
The influence of the partial pressure of oxygen (PO2) on the microstructural and magnetic properties...
Polar oxide interfaces are an important focus of research due to their novel functionality which is ...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
The low-temperature magnetic behavior of granular Co-CoO exchange bias systems, prepared by oxygen i...
Exchange bias (EB) is the interfacial coupling between a ferromagnet (FM) and an antiferromagnet (AF...
An original approach for the formation of an exchange bias system is presented. Alternative to surfa...
We use ion implantation as a new approach to build an anti-ferromagnetic (AFM) cluster embedded exch...
A series of ferromagnetic Ni 80Fe20(55 nm)/antiferromagnetic CoO (25 to 200 nm)/ferromagnetic Co (55...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Exchange bias EB is induced by oxygen implantation in three different ferromagnetic materials pol...
Ion beam bombardment is a useful surface modification method in tailoring the microstructure and mag...
A series of ferromagnetic Ni80Fe20(55 nm)/antiferromagnetic CoO (25 to 200 nm)/ferromagnetic Co (55 ...
Effective manipulation of the magnetic properties of nanostructured metallic alloys, exhibiting inte...
The influence of the partial pressure of oxygen (PO2) on the microstructural and magnetic properties...
Polar oxide interfaces are an important focus of research due to their novel functionality which is ...