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Coordination-driven magnetic-to-nonmagnetic transition in manganese doped silicon clusters

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arxiv 1302.6718 v1 pith:RZ2E4J7R submitted 2013-02-27 physics.atm-clus cond-mat.mtrl-sci

classification physics.atm-cluscond-mat.mtrl-sci
keywords siliconmanganesemagnetictransitionclustersmagnetic-to-nonmagneticmanganese-dopedstates
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The interaction of a single manganese impurity with silicon is analyzed in a combined experimental and theoretical study of the electronic, magnetic, and structural properties of manganese-doped silicon clusters. The structural transition from exohedral to endohedral doping coincides with a quenching of high-spin states. For all geometric structures investigated, we find a similar dependence of the magnetic moment on the manganese coordination number and nearest neighbor distance. This observation can be generalized to manganese point defects in bulk silicon, whose magnetic moments fall within the observed magnetic-to-nonmagnetic transition, and which therefore react very sensitively to changes in the local geometry. The results indicate that high spin states in manganese-doped silicon could be stabilized by an appropriate lattice expansion.

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