Magnetic analysis of Heusler / III-V semiconductor interfaces using density functional theory
ORAL
Abstract
Heusler compounds are of high interest due to their half-metallic, superconducting or topological properties. Here we use a PBE+U approach in density functional theory to investigate the interfacial properties of X2MnIn (X=Ni,Ti) magnetic Heusler compounds with lattice-matched high-spin-orbit coupling III-V semiconductors (InAs, InSb) that have attracted interest, for example, as potential platforms for Majorana modes. We first show a convincing lack of induced moment in the semiconductor, which suggests proximity-induced magnetic exchange correlations are unlikely to arise in these interfaces. We then analyze the interfaces in the context of their suitability for injecting high spin polarizations through layer-resolved polarization and band projection analyses.
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Presenters
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Brett Heischmidt
University of Minnesota
Authors
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Brett Heischmidt
University of Minnesota
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Maituo Yu
Carnegie Mellon University
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Derek Dardzinski
Carnegie Mellon University
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James Etheridge
University of Minnesota
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Saeed Moayedpour
Carnegie Mellon University
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Paul A Crowell
University of Minnesota
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Noa Marom
Carnegie Mellon University
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Vlad S Pribiag
University of Minnesota