2004
DOI: 10.1016/j.physb.2004.06.045
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XMCD study of magnetic phase transition in Mn3ZnC perovskite

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Cited by 6 publications
(2 citation statements)
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“…Indeed, previously similar behavior has been observed in other Zn-doped antiperovskite compounds and the detailed origins are still unclear up to now [10,11]. However, if we considered the contributions to the magnetic interactions from 4p electron state of Zn atom as reported previously [15,16], the above results may be understood as follows: on one hand, with increasing x, the contributions from 4p electron states are enhanced, which results in the suppression of AFM interaction and decrease of T FA .…”
Section: Resultssupporting
confidence: 58%
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“…Indeed, previously similar behavior has been observed in other Zn-doped antiperovskite compounds and the detailed origins are still unclear up to now [10,11]. However, if we considered the contributions to the magnetic interactions from 4p electron state of Zn atom as reported previously [15,16], the above results may be understood as follows: on one hand, with increasing x, the contributions from 4p electron states are enhanced, which results in the suppression of AFM interaction and decrease of T FA .…”
Section: Resultssupporting
confidence: 58%
“…On the other hand, with increasing x (xr0.20), M S decreases firstly, then increases with increasing x, which could be mainly attributed to the competitions between the expanding lattice constant and the enhanced magnetic contributions from 4p electron state [15,16]. previous investigations of the parent compound GaCMn 3 [1].…”
Section: Resultsmentioning
confidence: 81%