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Magnetic phase diagrams of amorphous (Ni100-xFex)-metalloid alloys: The key role of the electronic density of states at the Fermi level for the onset of magnetic order.

Authors :
Kiss, L.F.
Bakonyi, I.
Source :
Journal of Magnetism & Magnetic Materials. Nov2017, Vol. 441, p328-332. 5p.
Publication Year :
2017

Abstract

There have been extended studies on the appearance of ferromagnetism in transition-metal–metalloid (MD) glasses. In particular, the paramagnetic (PM) to ferromagnetic (FM) transition has been investigated on numerous (Ni 100-x Fe x )-MD alloys upon the introduction of Fe where MD can represent a combination of various metalloid elements, while keeping the metal/metalloid ratio constant. It has been reported that adding a sufficient amount of Fe to a Pauli PM Ni-MD alloy matrix first induces a spin-glass (SG) state at low temperatures which goes over to a PM state at higher temperatures. Beyond a certain Fe content, x c , the SG state transforms to a FM state upon increasing the temperature. By plotting the characteristic transition temperatures as a function of the Fe content, a magnetic phase diagram can be constructed for each Ni-Fe-MD system which has a multicritical point (MCP) at x c . By using the reported magnetic phase diagrams of various Ni-Fe-MD alloy systems, it is shown that the critical Fe content, x c scales inversely with the density of states at the Fermi level, N ( E F ), of the parent Ni-MD matrix. This means that the higher the N ( E F ), the lower the critical Fe content to induce ferromagnetism in the Ni-MD matrix. This is then discussed in terms of the Stoner enhancement factor, S , which characterizes the tendency of the matrix to become ferromagnetic. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03048853
Volume :
441
Database :
Academic Search Index
Journal :
Journal of Magnetism & Magnetic Materials
Publication Type :
Academic Journal
Accession number :
124140876
Full Text :
https://doi.org/10.1016/j.jmmm.2017.05.056