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      Towards coherent spin precession in pure-spin current

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          Abstract

          Non-local spin injection in lateral spin valves generates a pure spin current which is a diffusive flow of spins (i.e. spin angular momentums) with no net charge flow. The diffusive spins lose phase coherency in precession while undergoing frequent collisions and these events lead to a broad distribution of the dwell time in a transport channel between the injector and the detector. Here we show the lateral spin-valves with dual injectors enable us to detect a genuine in-plane precession signal from the Hanle effect, demonstrating the phase coherency in the in-plane precession is improved with an increase of the channel length. The coherency in the spin precession shows a universal behavior as a function of the normalized separation between the injector and the detector in material-independent fashion for metals and semiconductors including graphene.

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          Author and article information

          Journal
          29 June 2012
          Article
          1206.6969
          e1f254f0-8fcc-47d4-a50e-bd088658fcdc

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

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          cond-mat.mes-hall cond-mat.mtrl-sci

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