The cubic Heusler compound Mn1.5FeV0.5Al with the L2(1) Heusler structure is the first fully compensated half-metallic ferrimagnet with 24 valence electrons. The ferrimagnetic state can be tuned by changing the composition such that the compensation point appears at finite temperatures ranging from 0 K up to 226 K, while retaining half-metallicity in the system. In this paper, the structural, magnetic and transport properties of the Mn-Fe-V-Al system are discussed. Magnetic reversal and a change of sign of the anomalous Hall effect were observed at the compensation point, which gives rise to a sublattice spin-crossing. These materials present new possibilities for potential spintronic devices because of their advantageous properties such as...
Heusler alloys are theoretically predicted to become half-metals at room temperature (RT). The advan...
Large perpendicular magnetic anisotropy (PMA), high spin polarization at the Fermi level, and a low ...
In this article the Co-2 based Heusler compounds are discussed as potential materials for spin volta...
The cubic Heusler compound Mn1.5FeV0.5Al with the L2(1) Heusler structure is the first fully compens...
The Slater-Pauling rule states that L2(1) Heusler compounds with 24 valence electrons never exhibit ...
Half-metallic Heusler alloys are among the most promising materials for future applications in spint...
Half-metallic antiferromagnets are the ideal materials for spintronic applications since their zero ...
Recently, spin-gapless semiconductors (SGSs) and half-metallic materials (HMMs) have received consid...
Heusler alloys, a class of easily prepared, highly ordered intermetallic compounds, were first repor...
Heusler compounds are a remarkable class of materials with more than 1000 members and a wide range o...
Abstract: A brief survey of experimental and theoretical studies of half-metallic ferromagnets (HMFs...
Extensive ab-initio electronic structure calculations on Heusler alloys suggest that Cr2CoGa is the ...
A first-principles study of the electronic structure and magnetic properties of the Heusler compound...
We report measurements of the magnetic, transport, and thermal properties of the Heusler-type compou...
Compensated ferrimagnets, due to their zero net magnetization and potential for large spin-polarizat...
Heusler alloys are theoretically predicted to become half-metals at room temperature (RT). The advan...
Large perpendicular magnetic anisotropy (PMA), high spin polarization at the Fermi level, and a low ...
In this article the Co-2 based Heusler compounds are discussed as potential materials for spin volta...
The cubic Heusler compound Mn1.5FeV0.5Al with the L2(1) Heusler structure is the first fully compens...
The Slater-Pauling rule states that L2(1) Heusler compounds with 24 valence electrons never exhibit ...
Half-metallic Heusler alloys are among the most promising materials for future applications in spint...
Half-metallic antiferromagnets are the ideal materials for spintronic applications since their zero ...
Recently, spin-gapless semiconductors (SGSs) and half-metallic materials (HMMs) have received consid...
Heusler alloys, a class of easily prepared, highly ordered intermetallic compounds, were first repor...
Heusler compounds are a remarkable class of materials with more than 1000 members and a wide range o...
Abstract: A brief survey of experimental and theoretical studies of half-metallic ferromagnets (HMFs...
Extensive ab-initio electronic structure calculations on Heusler alloys suggest that Cr2CoGa is the ...
A first-principles study of the electronic structure and magnetic properties of the Heusler compound...
We report measurements of the magnetic, transport, and thermal properties of the Heusler-type compou...
Compensated ferrimagnets, due to their zero net magnetization and potential for large spin-polarizat...
Heusler alloys are theoretically predicted to become half-metals at room temperature (RT). The advan...
Large perpendicular magnetic anisotropy (PMA), high spin polarization at the Fermi level, and a low ...
In this article the Co-2 based Heusler compounds are discussed as potential materials for spin volta...