Some Bravais lattices have a particular geometry that can slow down the motion of Bloch electrons by pre-localization due to the band-structure properties. Another known source of electronic localization in solids is the Coulomb repulsion in partially filled d or f orbitals, which leads to the formation of local magnetic moments. The combination of these two effects is usually considered of little relevance to strongly correlated materials. Here we show that it represents, instead, the underlying physical mechanism in two of the most important ferromagnets: nickel and iron. In nickel, the van Hove singularity has an unexpected impact on the magnetism. As a result, the electron–electron scattering rate is linear in temperature, in violation ...
I was cited for work both. in the field of magnetism and in that of disordered systems, and I would ...
Nanotechnology is deeply attached to the knowledge of basic mechanisms driving the change of materia...
The transition metal iron is the archetypal magnetic material. However some aspects of its magnetic ...
Several properties of the elements Fe and Ni can be correlated with each other by means of an empiri...
Impurity magnetism in metals can be investigated essentially under two aspects: One can explore the ...
The usual interaction between localized magnetic moments and itinerant electrons (RKKY-coupling) is ...
Abstract: A condition for local moment formation in metals derived by Stoddart and March (Ann. Phys....
We reanalyze the condition for metallic ferromagnetism in the framework of the tight-binding approxi...
In this paper we carry out a detailed orbital (l-m-m(s)) resolved study of the way in which the loca...
We have studied the magnetic and structural properties of synthetic and meteoritic face centred cubi...
In view of the recent experimental facts in the iron-pnictides, we make a proposal that the itineran...
Hall-effect measurements on nickel and its alloys containing 9.38, 18.77, 28.32, and 38.13 at.% of c...
We review the disordered local moment picture of itinerant electron paramagnets. Noting its failure ...
We present a local moment mean field theory for atomically disordered magnetic alloys. In this model...
Magnetic materials are often categorized in terms of either a purely local or a purely itinerant pic...
I was cited for work both. in the field of magnetism and in that of disordered systems, and I would ...
Nanotechnology is deeply attached to the knowledge of basic mechanisms driving the change of materia...
The transition metal iron is the archetypal magnetic material. However some aspects of its magnetic ...
Several properties of the elements Fe and Ni can be correlated with each other by means of an empiri...
Impurity magnetism in metals can be investigated essentially under two aspects: One can explore the ...
The usual interaction between localized magnetic moments and itinerant electrons (RKKY-coupling) is ...
Abstract: A condition for local moment formation in metals derived by Stoddart and March (Ann. Phys....
We reanalyze the condition for metallic ferromagnetism in the framework of the tight-binding approxi...
In this paper we carry out a detailed orbital (l-m-m(s)) resolved study of the way in which the loca...
We have studied the magnetic and structural properties of synthetic and meteoritic face centred cubi...
In view of the recent experimental facts in the iron-pnictides, we make a proposal that the itineran...
Hall-effect measurements on nickel and its alloys containing 9.38, 18.77, 28.32, and 38.13 at.% of c...
We review the disordered local moment picture of itinerant electron paramagnets. Noting its failure ...
We present a local moment mean field theory for atomically disordered magnetic alloys. In this model...
Magnetic materials are often categorized in terms of either a purely local or a purely itinerant pic...
I was cited for work both. in the field of magnetism and in that of disordered systems, and I would ...
Nanotechnology is deeply attached to the knowledge of basic mechanisms driving the change of materia...
The transition metal iron is the archetypal magnetic material. However some aspects of its magnetic ...