We report here noncollinear magnetic configurations in the Heusler alloys Ni2MnGa and Ni2MnAl which are interesting in the context of the magnetic shape memory effect. The total energies for different spin spirals are calculated and the ground-state magnetic structures are identified. The calculated dispersion curves are used to estimate the Curie temperature which is found to be in good agreement with experiments. In addition, the variation of the magnetic moment as a function of the spiral structure is studied. Most of the variation is associated with Ni, and symmetry constraints relevant for the magnetization are identified. Based on the calculated results, the effect of the constituent atoms in determining the Curie temperature is discu...
First-principles calculations are used to study the structural, electronic and magnetic properties ...
The Ni(2)Mn(1+x)Z(1-x) Heusler alloys, where Z = In, Sn, Sb are attractive candidates for shape memo...
We study here, within the density-functional theory, the magnetic anisotropy energy (MAE) in Ni2MnGa...
We report here noncollinear magnetic configurations in the Heusler alloys Ni2MnGa and Ni2MnAl which ...
We report here noncollinear magnetic configurations in the Heusler alloys Ni2MnGa and Ni2MnAl which ...
The two main effects underlying the magnetic shape memory effect in Ni2MnGa are martensitic transfor...
The two main effects underlying the magnetic shape memory effect in Ni2MnGa are martensitic transfor...
We study the influence of the tetragonalization occurring during the martensitic phase transition on...
The phase diagrams of magnetic shape-memory Heusler alloys, in particular, ternary Ni-Mn-Z and quart...
Magnetic shape memory (MSM) alloys are novel smart materials which exhibit magnetic field induced st...
Kulkurille, missa ̈ kuljetkaan... Magnetic shape memory (MSM) alloys are novel smart materials which...
We present a first-principles study of the physical properties of the disordered Ni2-xMnSb alloys wh...
The electronic structure and magnetic properties in the Ni2MnZ series, where Z=Al, Ga, In, Sn, Sb, a...
The electronic structure and magnetic properties in the Ni2MnZ series, where Z=Al, Ga, In, Sn, Sb, a...
The Ni(2)Mn(1+x)Z(1-x) Heusler alloys, where Z = In, Sn, Sb are attractive candidates for shape memo...
First-principles calculations are used to study the structural, electronic and magnetic properties ...
The Ni(2)Mn(1+x)Z(1-x) Heusler alloys, where Z = In, Sn, Sb are attractive candidates for shape memo...
We study here, within the density-functional theory, the magnetic anisotropy energy (MAE) in Ni2MnGa...
We report here noncollinear magnetic configurations in the Heusler alloys Ni2MnGa and Ni2MnAl which ...
We report here noncollinear magnetic configurations in the Heusler alloys Ni2MnGa and Ni2MnAl which ...
The two main effects underlying the magnetic shape memory effect in Ni2MnGa are martensitic transfor...
The two main effects underlying the magnetic shape memory effect in Ni2MnGa are martensitic transfor...
We study the influence of the tetragonalization occurring during the martensitic phase transition on...
The phase diagrams of magnetic shape-memory Heusler alloys, in particular, ternary Ni-Mn-Z and quart...
Magnetic shape memory (MSM) alloys are novel smart materials which exhibit magnetic field induced st...
Kulkurille, missa ̈ kuljetkaan... Magnetic shape memory (MSM) alloys are novel smart materials which...
We present a first-principles study of the physical properties of the disordered Ni2-xMnSb alloys wh...
The electronic structure and magnetic properties in the Ni2MnZ series, where Z=Al, Ga, In, Sn, Sb, a...
The electronic structure and magnetic properties in the Ni2MnZ series, where Z=Al, Ga, In, Sn, Sb, a...
The Ni(2)Mn(1+x)Z(1-x) Heusler alloys, where Z = In, Sn, Sb are attractive candidates for shape memo...
First-principles calculations are used to study the structural, electronic and magnetic properties ...
The Ni(2)Mn(1+x)Z(1-x) Heusler alloys, where Z = In, Sn, Sb are attractive candidates for shape memo...
We study here, within the density-functional theory, the magnetic anisotropy energy (MAE) in Ni2MnGa...