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Enhanced spin polarization in an asymmetric magnetic graphene superlattice
Authors:Qi-Rui Ke  Xiao-Dong Chen  Xiao-Tao Zu
Affiliation:
  • Department of Applied Physics and State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, China
  • Abstract:
    The authors investigate the spin-resolved transport through an asymmetrical magnetic graphene superlattice (MGS) consisting of the periodic barriers with abnormal one in height. To quantitatively depict the asymmetrical MGS, an asymmetry factor has been introduced to measure the height change of the abnormal barrier. It is shown that the spin filter effect is strongly enhanced by the barrier asymmetry both in the Klein and the classical tunneling regimes. In the presence of abnormal barrier, the conductance with certain spin direction is suppressed with respect to different tunneling regimes, and thus high spin polarization with opposite sign can be achieved.
    Keywords:A. Magnetic graphene superlattice   A. Barrier asymmetry   D. Spin conductance   D. Spin polarization
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