Quantitative atomic order characterization of a Mn2FeAl Heusler epitaxial thin film
Author(s) -
Samer Kurdi,
Yuya Sakuraba,
Keisuke Masuda,
Hiroo Tajiri,
B. Nair,
Guillaume F. Nataf,
M. E. Vickers,
Günter Reiss,
Markus Meinert,
S. S. Dhesi,
M. Ghidini,
Z. H. Barber
Publication year - 2022
Publication title -
journal of physics d applied physics
Language(s) - English
Resource type - Journals
eISSN - 1361-6463
pISSN - 0022-3727
DOI - 10.1088/1361-6463/ac4e32
Subject(s) - feal , materials science , magnetic moment , characterization (materials science) , condensed matter physics , thin film , sputter deposition , metal , magnetoresistance , crystallography , alloy , magnetic field , sputtering , nanotechnology , metallurgy , chemistry , intermetallic , physics , quantum mechanics
In this work, we investigate the effect of anti-site disorder on the half-metallic properties of a Mn 2 FeAl Heusler alloy thin film. The film was grown on TiN-buffered MgO 001 substrates via magnetron sputtering. A detailed structural characterization using x-ray diffraction (XRD) and anomalous XRD showed that the film crystallizes in the partially disordered L 2 1 B structure with 33% disorder between the Mn(B) and Al(D) sites. We measure a positive anisotropic magnetoresistance in the film, which is an indication of non-half metallic behaviour. Our x-ray magnetic circular dichroism sum rules analysis shows that Mn carries the magnetic moment in the film, with a positive Fe moment. Experimentally determined moments correspond most closely with those found by density functional calculated for the L 2 1 B structure with Mn(B) and Al(D) site disorder, matching the experimental structural analysis. We thus attribute the deviation from half-metallic behaviour to the formation of the L 2 1 B structure. To realize a half-metallic Mn 2 FeAl film it is important that the inverse Heusler XA structure is stabilized with minimal anti-site atomic disorder.
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