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MA: Fachverband Magnetismus
MA 2: Magnetic Clusters
MA 2.1: Vortrag
Montag, 31. März 2014, 09:30–09:45, HSZ 401
Coordination-driven magnetic-to-nonmagnetic transition in manganese doped silicon clusters — Vicente Zamudio-Bayer1, •Linn Leppert2, Konstantin Hirsch1,3, Andreas Langenberg1,3, Jochen Rittmann1,3, Markus Kossick1,3, Marlene Vogel1,3, Robert Richter3, Akira Terasaki4, Thomas Möller3, Bernd von Issendorff5, Stephan Kümmel2, and Tobias Lau1 — 1Institut für Methoden und Instrumentierung der Forschung mit Synchrotronstrahlung, Helmholtz-Zentrum Berlin für Materialien und Energie, Berlin, Germany — 2Theoretical Physics IV, University of Bayreuth, Germany — 3Institut für Optik und Atomare Physik, Technische Universität Berlin, Germany — 4Cluster Research Laboratory, Toyota Technological Institute, Futamata, Ichikawa, Chiba, Japan — 5Fakultät für Physik, Universität Freiburg, Germany
Using x-ray magnetic circular dichroism spectroscopy and non-empirical density functional theory we analyze the electronic, magnetic, and structural properties of manganese-doped silicon clusters. We find a correlation of the magnetic moment with the manganese coordination number and nearest-neighbor distance that indicates that high-spin states in manganese-doped silicon could be stabilized by an appropriate lattice expansion. We further discuss the necessity to correct for self-interaction errors in the underlying density functional approximation in order to predict the magnetic-to-nonmagnetic transition in accordance with experiment.