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Magnetic exchange interactions in B-, Si-, and As-doped Fe2P from first-principles theory

Authors :
Delczeg-Czirjak, E. K.
Gercsi, Z.
Bergqvist, L.
Eriksson, Olle
Szunyogh, L.
Nordblad, Per
Johansson, Börje
Vitos, Levente
Delczeg-Czirjak, E. K.
Gercsi, Z.
Bergqvist, L.
Eriksson, Olle
Szunyogh, L.
Nordblad, Per
Johansson, Börje
Vitos, Levente
Publication Year :
2012

Abstract

Di-iron phosphide (Fe2P) is a parent system for a set of magnetocaloric materials. Although the magnetic ordering temperature (T-C = 215 K) of the stoichiometric composition is too low for room-temperature magnetic refrigeration, the partial replacement of P with B, Si, or As elements results in a steep increase in the magnetic ordering temperature. Doping leads to different equilibrium volumes and hexagonal axial ratios (c/a) within the same crystallographic phase over a wide concentration range. Here, using first principles theory, we decompose the change in the total magnetic exchange interaction upon doping into chemical and structural contributions, the latter including the c/a-ratio and volume effects. We demonstrate that for the investigated alloys the structural effect can be ascribed mainly to the decrease in the c/a ratio that strengthens the magnetic exchange interactions between the two Fe sublattices.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235067460
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevB.85.224435