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      Electrical detection of spin precession in a metallic mesoscopic spin valve.

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          Abstract

          To study and control the behaviour of the spins of electrons that are moving through a metal or semiconductor is an outstanding challenge in the field of 'spintronics', where possibilities for new electronic applications based on the spin degree of freedom are currently being explored. Recently, electrical control of spin coherence and coherent spin precession during transport was studied by optical techniques in semiconductors. Here we report controlled spin precession of electrically injected and detected electrons in a diffusive metallic conductor, using tunnel barriers in combination with metallic ferromagnetic electrodes as spin injector and detector. The output voltage of our device is sensitive to the spin degree of freedom only, and its sign can be switched from positive to negative, depending on the relative magnetization of the ferromagnetic electrodes. We show that the spin direction can be controlled by inducing a coherent spin precession caused by an applied perpendicular magnetic field. By inducing an average precession angle of 180 degrees, we are able to reverse the sign of the output voltage.

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          Author and article information

          Journal
          Nature
          Nature
          Springer Science and Business Media LLC
          0028-0836
          0028-0836
          Apr 18 2002
          : 416
          : 6882
          Affiliations
          [1 ] Department of Applied Physics and Materials Science Center, University of Groningen, The Netherlands. jedema@phys.rug.nl
          Article
          416713a
          10.1038/416713a
          11961548
          0a5e2a7f-b998-4067-bcbb-2d9029bc6e73
          History

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