Ferromagnet-semiconductor heterostructures are promising materials for the integration of magnetic or spin related functions into semiconductor materials and devices. Fe-on-GaAs and MnAs-on-GaAs are canditates for potential room temperature applications. We review our recent results on growth, structural and magnetic properties of these materials, and their use as spin injectors. The most critical issue of Fe/GaAs heterostructures is the delicate interface formation during epitaxy and its possible modification during subsequent processing. The properties of the MnAs/GaAs heterostructures are intimately related to the phase transition between ferromagnetic and paramagnetic phases
AbstractProgress in advanced material growth techniques such as molecular beam epitaxy has made it p...
We demonstrate that the growth of Fe/(Ga,Mn)As heterointerfaces can be efficiently controlled by epi...
Ferromagnetic Heusler alloys can be used in combination with semiconductors to create spintronic dev...
Ferromagnet-semiconductor heterostructures are promising materials for the integration of magnetic o...
The interface magnetic and electronic properties of two Fe/III-V semiconductor systems, namely Fe/Ga...
High quality growth of ferromagnetic metals/III-V semiconductors heterostructures is an interesting ...
We report the experimental results of Fe and Fe3O4 nanostructures on GaAs(100) surfaces and hybrid F...
In this thesis, the trail of the hybrid MnAs (ferromagnetic metal)/GaAs system was investigated in t...
The III-V ferromagnetic semiconductor Gallium Manganese Arsenide ((Ga,Mn)As) is one of the most inte...
Spintronics is an emerging; multidisciplinary field which examines the role of electron and nuclear ...
We report the experimental results of Fe and Fe3O4 nanostructures on GaAs(100) surfaces and hybrid F...
Semiconductor spintronics is an active research field which promises a huge improvement compared to ...
Recognising that the characterisation of actual interfaces in magnetic multilayer systems will provi...
An optimized heterostructure design and an optimized surface sputter-cleaning procedure allow thegro...
The work described in this thesis has to be seen in the context of developing semiconductor technolo...
AbstractProgress in advanced material growth techniques such as molecular beam epitaxy has made it p...
We demonstrate that the growth of Fe/(Ga,Mn)As heterointerfaces can be efficiently controlled by epi...
Ferromagnetic Heusler alloys can be used in combination with semiconductors to create spintronic dev...
Ferromagnet-semiconductor heterostructures are promising materials for the integration of magnetic o...
The interface magnetic and electronic properties of two Fe/III-V semiconductor systems, namely Fe/Ga...
High quality growth of ferromagnetic metals/III-V semiconductors heterostructures is an interesting ...
We report the experimental results of Fe and Fe3O4 nanostructures on GaAs(100) surfaces and hybrid F...
In this thesis, the trail of the hybrid MnAs (ferromagnetic metal)/GaAs system was investigated in t...
The III-V ferromagnetic semiconductor Gallium Manganese Arsenide ((Ga,Mn)As) is one of the most inte...
Spintronics is an emerging; multidisciplinary field which examines the role of electron and nuclear ...
We report the experimental results of Fe and Fe3O4 nanostructures on GaAs(100) surfaces and hybrid F...
Semiconductor spintronics is an active research field which promises a huge improvement compared to ...
Recognising that the characterisation of actual interfaces in magnetic multilayer systems will provi...
An optimized heterostructure design and an optimized surface sputter-cleaning procedure allow thegro...
The work described in this thesis has to be seen in the context of developing semiconductor technolo...
AbstractProgress in advanced material growth techniques such as molecular beam epitaxy has made it p...
We demonstrate that the growth of Fe/(Ga,Mn)As heterointerfaces can be efficiently controlled by epi...
Ferromagnetic Heusler alloys can be used in combination with semiconductors to create spintronic dev...