We study the temperature dependent magnetization properties of (010)-oriented Ni-Mn-Ga epitaxial films on MgO(001) substrates. In the martensitic phase, we observe pronounced abrupt slope changes in the magnetization loops for all studied samples. Our experimental findings are discussed in conjunction with the micromagnetic simulations, revealing that the characteristic magnetization behavior is governed solely by the magnetization switching within the specific martensitic variant pattern, and no reorientation of twin variants is involved in the process. Our study emphasizes the important role of the magnetostatic interactions in the magnetization behavior of magnetic shape memory alloy thin films.publishe
We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on Ga...
We investigate the martensitic transition of single crystalline Ni2MnGa(110)?Al2O3(112? 0) and Ni2Mn...
In recent years there has been an increased demand for the development of smart and functional mater...
We study the temperature dependent magnetization properties of (010)-oriented Ni-Mn-Ga epitaxial fil...
Magnetically induced reorientation (MIR) is observed in epitaxial orthorhombic Ni-Mn-Ga films. Ni-Mn...
In this work, a detailed report on the growth of elongated bar-like crystallites with a definite cry...
In this work, a detailed report on the growth of elongated bar-like crystallites with a definite cry...
MnxGa alloys are interesting for a range of applications such as in spintronics and rare-earth free ...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large deformation upon the applicati...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large deformation upon the applicati...
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...
One interesting application of epitaxial magnetic thin films is to use them as one of the electrodes...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large, reversible deformation upon ...
We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on Ga...
We investigate the martensitic transition of single crystalline Ni2MnGa(110)?Al2O3(112? 0) and Ni2Mn...
In recent years there has been an increased demand for the development of smart and functional mater...
We study the temperature dependent magnetization properties of (010)-oriented Ni-Mn-Ga epitaxial fil...
Magnetically induced reorientation (MIR) is observed in epitaxial orthorhombic Ni-Mn-Ga films. Ni-Mn...
In this work, a detailed report on the growth of elongated bar-like crystallites with a definite cry...
In this work, a detailed report on the growth of elongated bar-like crystallites with a definite cry...
MnxGa alloys are interesting for a range of applications such as in spintronics and rare-earth free ...
Epitaxial Ni-Mn-Ga thin films with a room temperature martensite phase were fabricated on single cry...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large deformation upon the applicati...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large deformation upon the applicati...
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...
One interesting application of epitaxial magnetic thin films is to use them as one of the electrodes...
Ni-Mn-Ga magnetic shape memory alloys (MSMAs) tend to undergo a large, reversible deformation upon ...
We investigated the thermal evolution of the magnetic properties of MnAs epitaxial films grown on Ga...
We investigate the martensitic transition of single crystalline Ni2MnGa(110)?Al2O3(112? 0) and Ni2Mn...
In recent years there has been an increased demand for the development of smart and functional mater...