International audienceEpitaxially grown thin films with nominal composition Ni50Mn30Ga20 and thickness 1.5 mu m were prepared on MgO(1 0 0) substrate with a Cr buffer layer by DC magnetron sputtering. The surface layer microstructures of the as-deposited thin films consist of non-modulated (NM) martensite plates with tetragonal structure at ambient temperature, which can be classified into the low and high relative contrast zones of clustered plates (i.e. plate colonies) with parallel or near-parallel inter-plate interface traces in secondary electron images. Orientation analyses by electron backscatter diffraction revealed that individual NM plates are composed of alternately distributed thicker and thinner lamellar variants with (1 1 2)(T...
Teichert N, Auge A, Yuzuak E, et al. Influence of film thickness and composition on the martensitic ...
International audienceFerromagnetic shape memory alloys such as Ni-Mn-Ga usually undergo intermarten...
The development of crystallographic texture (preferred orientation), structure and microstructure ha...
7th International Conference on Technological Advances of Thin Films and Surface Coatings, Chongqing...
In the present work, the crystal structure, the micro-structure and the crystallographic orientation...
Thin films of Ni–Mn–Ga alloy ranging in thickness from 10 to 100 nm have been epitaxially grown on M...
In this work, a detailed investigation has been performed on hetero-epitaxial growth and microstruct...
International audienceNi-Mn-Ga films in the austenite and the martensite structures at room temperat...
The (001)-oriented surface of epitaxial off-stoichiometric Ni–Mn–Ga ferromagnetic shape memory alloy...
Epitaxial Ni–Mn–Ga magnetic shape memory films with varied thickness and variable stoichiometry were...
We report the epitaxial growth of Ni2MnGa thin films on MgO(100) substrate deposited at elevated tem...
Highly oriented Ni-Mn-Ga thin film with multiple variants and room temperature orthorhombic martensi...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Title: Martensite microstructures in thin films and monocrystals of Heusler alloys Ni-Mn-Ga Author: ...
Teichert N, Auge A, Yuzuak E, et al. Influence of film thickness and composition on the martensitic ...
International audienceFerromagnetic shape memory alloys such as Ni-Mn-Ga usually undergo intermarten...
The development of crystallographic texture (preferred orientation), structure and microstructure ha...
7th International Conference on Technological Advances of Thin Films and Surface Coatings, Chongqing...
In the present work, the crystal structure, the micro-structure and the crystallographic orientation...
Thin films of Ni–Mn–Ga alloy ranging in thickness from 10 to 100 nm have been epitaxially grown on M...
In this work, a detailed investigation has been performed on hetero-epitaxial growth and microstruct...
International audienceNi-Mn-Ga films in the austenite and the martensite structures at room temperat...
The (001)-oriented surface of epitaxial off-stoichiometric Ni–Mn–Ga ferromagnetic shape memory alloy...
Epitaxial Ni–Mn–Ga magnetic shape memory films with varied thickness and variable stoichiometry were...
We report the epitaxial growth of Ni2MnGa thin films on MgO(100) substrate deposited at elevated tem...
Highly oriented Ni-Mn-Ga thin film with multiple variants and room temperature orthorhombic martensi...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Title: Martensite microstructures in thin films and monocrystals of Heusler alloys Ni-Mn-Ga Author: ...
Teichert N, Auge A, Yuzuak E, et al. Influence of film thickness and composition on the martensitic ...
International audienceFerromagnetic shape memory alloys such as Ni-Mn-Ga usually undergo intermarten...
The development of crystallographic texture (preferred orientation), structure and microstructure ha...