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      High-temperature Aharonov-Bohm-Casher interferometer

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          Abstract

          We study theoretically the combined effect of the spin-orbit and Zeeman interactions on the tunneling electron transport through a single-channel quantum ring threaded by magnetic flux. We focus on the high temperature case (temperature is much higher than the level spacing in the ring) and demonstrate that spin-interference effects are not suppressed by thermal averaging. In the absence of the Zeeman coupling the high-temperature tunneling conductance of the ring exhibits two types of oscillations: Aharonov-Bohm oscillations with magnetic flux and Aharonov-Casher oscillations with the strength of the spin-orbit interaction. For weak tunneling coupling both oscillations have the form of sharp periodic antiresonances. In the vicinity of the antiresonances the tunneling electrons acquire spin polarization, so that the ring serves as a spin polarizer. We also demonstrate that the Zeeman coupling leads to appearance of two additional peaks both in the tunneling conductance and in the spin polarization.

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          Journal
          29 October 2011
          Article
          10.1103/PhysRevB.85.075422
          1110.6520
          393ab627-39ae-4c7e-8177-d08295b1e5e7

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          cond-mat.mes-hall

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