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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Tunneling of Dirac fermions through magnetic barriers in graphene
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Tunneling of Dirac fermions through magnetic barriers in graphene

机译:Dirac费米子穿过石墨烯中的磁性势垒隧穿

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摘要

We have studied the tunneling of Dirac fermions through magnetic barriers in graphene. Magnetic barriers are produced via delta function-like inhomogeneous magnetic fields in which Dirac fermions in graphene experience the tunneling barrier in the real sense in contrast to Klein paradox caused by electrostatic barriers. The transmission through the magnetic barriers as functions of incident energy and angle of incoming fermions shows characteristic oscillations associated with tunneling resonances. We have also found the confined states in the magnetic barrier region which turn out to correspond to the total internal reflection in the usual optics.
机译:我们研究了狄拉克费米子穿过石墨烯中的磁性势垒的隧穿。磁势垒是通过类似三角函数的不均匀磁场产生的,其中石墨烯中的狄拉克费米子实际上经历了隧穿势垒,这与静电势垒引起的克莱因悖论相反。作为入射能量和入射费米角的函数,通过磁垒的传输显示出与隧道共振相关的特征振荡。我们还发现了在磁障区域中的局限状态,结果与普通光学系统中的全内反射相对应。

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