Magnetotransport in the amorphous Ge(1-x)Mn(x) with self-assembled nanostructures
ORAL
Abstract
Mn ions have been reported to segregate into intermetallic precipitates or form coherent clusters in crystalline Ge(1-x)Mn(x) thin films. In this study, we investigated the microstructure of amorphous Ge(1-x)Mn(x) synthesized using low temperature molecular beam epitaxy, and observed the self-assembly of Mn rich nanostructures in Ge matrix with both cluster and column shapes by varying the Mn concentration. The magnetotransport properties were found to closely correlate with the magnetism. Negative magnetoresistance (MR) showed a dominant effect in as-grown materials, and required a very high magnetic field to saturate, whereas only positive MR was observed in post-annealed Ge(1-x)Mn(x). The anisotropic behavior in magnetism and magnetoresistance will also be discussed.
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Authors
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Wenjing Yin
Univ of Virginia, University of Virginia
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Jan Jaroszynski
National High Magnetic Field Lab
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Jiwei Lu
University of Virginia
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Copeland Kell
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Li He
Rensselaer Polytechnic Institute
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Melissa Dolph
University of Virginia
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Jerrold Floro
U. Virginia, University of Virginia
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Stuart Wolf
Univ of Virginia, University of Virginia, Department of Physics, University of Virginia