2016
DOI: 10.1103/physrevb.94.094412
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Magnetic hardening and antiferromagnetic/ferromagnetic phase coexistence inMn1xFexRu2SnHeusler solid solutions

Abstract: We investigate the average structure, local structure, and magnetic behavior of Heusler alloys of the composition Mn 1−x Fe x Ru 2 Sn, between antiferromagnetic (AFM) MnRu 2 Sn and ferromagnetic (FM) FeRu 2 Sn (often written Ru 2 MnSn and Ru 2 FeSn). Using a combination of neutron total scattering, electron microscopy, and 57 Fe Mössbauer spectroscopy, we conclude that true solid solutions are formed across the compositional space investigated, with Fe substituting for Mn on the Heusler lattice, with little or… Show more

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Cited by 9 publications
(39 citation statements)
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“…Figure 1(b) shows the phase diagram when only magnetic degrees of freedom are allowed to equilibrate in the presence of quenched in Mn/Fe disorder. This phase diagram emulates the conditions of the experimental studies of Douglas et al [5] Figure 1(b) shows that the magnetic transitions are still present in the chemically-quenched Heusler alloy and that they are similar to those appearing in the fully equilibrated phase diagram of Fig. 1(a) for x < 0.4 and x > 0.75.…”
Section: A Model Parameterizationsupporting
confidence: 81%
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“…Figure 1(b) shows the phase diagram when only magnetic degrees of freedom are allowed to equilibrate in the presence of quenched in Mn/Fe disorder. This phase diagram emulates the conditions of the experimental studies of Douglas et al [5] Figure 1(b) shows that the magnetic transitions are still present in the chemically-quenched Heusler alloy and that they are similar to those appearing in the fully equilibrated phase diagram of Fig. 1(a) for x < 0.4 and x > 0.75.…”
Section: A Model Parameterizationsupporting
confidence: 81%
“…(c) Low-temperature net magnetic moment of the metastable system at 5 K and no field, compared to ab-initio calculations [6] and experiment (saturated moment at 4 K). [5] of the miscibility gap appear to converge to a chemicalmagnetic tricritical point. A more in-depth analysis of this behavior, however, is beyond the scope of this study.…”
Section: A Model Parameterizationmentioning
confidence: 91%
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“…45,46 The present results indicate that the shifting of the hysteresis loops in both the pristine and oxidized samples are likely driven by mixed exchange interactions in the Fe-N caused by disorder at the nanoparticle surfaces.…”
Section: Methodsmentioning
confidence: 63%