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dc.contributor.authorMishra, Subodha, 1965-eng
dc.contributor.authorThulasi, Sunita, 1974-eng
dc.contributor.authorSatpathy, Sashi Sekhar, 1956-eng
dc.date.issued2005eng
dc.description.abstractWe study the spin dependent tunneling of electrons through a zinc-blende semiconductor with the indirect X (or Δ) minimum serving as the tunneling barrier. The basic difference between tunneling through the Γ vs the X barrier is the linear-k spin-orbit splitting of the two spin bands at the X point, as opposed to the k3 Dresselhaus splitting at the Γ point. The linear coefficient of the spin splitting at the X point is computed for several semiconductors using density-functional theory and the transport characteristics are calculated using the barrier tunneling model. We show that both the transmission coefficient as well as the spin polarization can be large, suggesting the potential application of these materials as spin filters.eng
dc.description.sponsorshipWe acknowledge support of this work by the U. S. Department of Energy through Grant No. DE-FG02-00ER45818.eng
dc.identifier.citationPhys. Rev. B 72, 195347 (2005) [5 pages]eng
dc.identifier.issn1098-0121eng
dc.identifier.urihttp://hdl.handle.net/10355/7228eng
dc.languageEnglisheng
dc.publisherAmerican Physical Societyeng
dc.relation.ispartofcollectionUniversity of Missouri--Columbia. College of Arts and Sciences. Department of Physics and Astronomy. Physics and Astronomy publicationseng
dc.source.urihttp://link.aps.org/doi/10.1103/PhysRevB.72.195347eng
dc.subjectspin polarized transporteng
dc.subjectsemiconductor compoundseng
dc.subjectelectronic transport in nanoscale materials and structureseng
dc.subject.lcshTunneling (Physics)eng
dc.subject.lcshSpintronics -- Experimentseng
dc.subject.lcshPolarization (Nuclear physics)eng
dc.titleSpin polarization via electron tunneling through an indirect-gap semiconductor barriereng
dc.typeArticleeng


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