The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films were studied theoretically and experimentally. High quality 8-nm films were grown by laser-assisted molecular beam epitaxy deposition. Magneto-transport measurements revealed that the films undergo electronic structure transformation similar to those of bulk materials at the martensitic transformation. The temperature of the transformation depends strongly on lattice parameters of the substrate. To explain this behavior, we performed DFT calculations on the system and found that different substrates change the relative stability of the ferromagnetic (FM) austenite and ferrimagnetic (FiM) martensite states. We conclude that the energy differen...
We have revealed the underlying mechanism of the martensitic phase transition (MPT) in a new class o...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
Teichert N, Auge A, Yuzuak E, et al. Influence of film thickness and composition on the martensitic ...
Auge A, Teichert N, Meinert M, et al. Thickness dependence of the martensitic transformation, magnet...
Auge A, Teichert N, Meinert M, et al. Thickness dependence of the martensitic transformation, magnet...
Krumme B, Auge A, Herper HC, et al. Element-specific electronic structure and magnetic properties of...
In recent years, ferromagnetic shape memory alloys have drawn an increasing scientific attention due...
We investigated magnetic and structural properties at the surface of epitaxial Ni2MnGa(110) Heusler ...
In the present study, structural and magnetic properties of Ni-Mn-Sn ferromagnetic shape memory allo...
We have revealed the underlying mechanism of the martensitic phase transition (MPT) in a new class o...
We have revealed the underlying mechanism of the martensitic phase transition (MPT) in a new class o...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
The effect of substrates on the magnetic and transport properties of Ni2Mn1.5In0.5 ultra-thin films ...
Teichert N, Auge A, Yuzuak E, et al. Influence of film thickness and composition on the martensitic ...
Auge A, Teichert N, Meinert M, et al. Thickness dependence of the martensitic transformation, magnet...
Auge A, Teichert N, Meinert M, et al. Thickness dependence of the martensitic transformation, magnet...
Krumme B, Auge A, Herper HC, et al. Element-specific electronic structure and magnetic properties of...
In recent years, ferromagnetic shape memory alloys have drawn an increasing scientific attention due...
We investigated magnetic and structural properties at the surface of epitaxial Ni2MnGa(110) Heusler ...
In the present study, structural and magnetic properties of Ni-Mn-Sn ferromagnetic shape memory allo...
We have revealed the underlying mechanism of the martensitic phase transition (MPT) in a new class o...
We have revealed the underlying mechanism of the martensitic phase transition (MPT) in a new class o...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...
The mechanical and magnetic properties of off-stoichiometric Ni2MnGa shape memory thin films deposit...