International audienceMnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room temperature (RT) in a mixture of two crystalline phases with distinct magnetic properties, organized as stripes along the MnAs [0001] direction. This particular morphology is driven by anisotropic epitaxial strain. We elucidate here the physical mechanisms at the origin of size reduction effect on the MnAs crystalline phase transition. We investigated the structural and magnetic changes in MnAs patterned microstructures (confined geometry) when the lateral dimension is reduced to values close to the periodicity and width of the stripes observed in continuous films. The effects of the microstructure's lateral size, shape and orienta...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceMost studies on MnAs material in its bulk form have been focused on its temper...
International audienceMnAs epitaxial thin films on GaAs(001) single crystalline substrates crystalli...
abstract: MnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room t...
Strain in epitaxial MnAs thin films on GaAs(001) substrates plays an important role in the coupled m...
We explore the dimension effect on the in-depth phase transition behavior of MnAs thin films on GaAs...
MnAs films were deposited by molecular-beam epitaxy on GaAs(001) and GaAs(111)B surfaces. Imaging of...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
We investigated the thermal evolution of the lattice parameters of a MnAs film epitaxially grown on ...
We investigated the thermal evolution of the lattice parameters of a MnAs film epitaxially grown on ...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceMost studies on MnAs material in its bulk form have been focused on its temper...
International audienceMnAs epitaxial thin films on GaAs(001) single crystalline substrates crystalli...
abstract: MnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room t...
Strain in epitaxial MnAs thin films on GaAs(001) substrates plays an important role in the coupled m...
We explore the dimension effect on the in-depth phase transition behavior of MnAs thin films on GaAs...
MnAs films were deposited by molecular-beam epitaxy on GaAs(001) and GaAs(111)B surfaces. Imaging of...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
The structural and magnetic properties of MnAs epilayers grown on GaAs(111)B have been investigated ...
We investigated the thermal evolution of the lattice parameters of a MnAs film epitaxially grown on ...
We investigated the thermal evolution of the lattice parameters of a MnAs film epitaxially grown on ...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceThe micromagnetic domain structure of MnAs films gave place to an intense rese...
International audienceMost studies on MnAs material in its bulk form have been focused on its temper...