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Giant Magnetoresistance in Ultrasmall Graphene Based Devices

机译:超小型石墨烯器件中的巨磁阻

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By computing spin-polarized electronic transport across a finite zigzag graphene ribbon bridging two metallic graphene electrodes, we demonstrate, as a proof of principle, that devices featuring 100% magnetoresistance can be built entirely out of carbon. In the ground state a short zigzag ribbon is an antiferromagnetic insulator which, when connecting two metallic electrodes, acts as a tunnel barrier that suppresses the conductance. The application of a magnetic field makes the ribbon ferromagnetic and conductive, increasing dramatically the current between electrodes. We predict large magnetoresistance in this system at liquid nitrogen temperature and 10 T or at liquid helium temperature and 300 G.
机译:通过计算桥接两个金属石墨烯电极的有限之字形石墨烯带上的自旋极化电子传输,我们证明,作为原理的证明,具有100%磁阻的器件可以完全由碳构成。在基态下,短的锯齿形带是反铁磁绝缘体,当连接两个金属电极时,它会起到抑制电导的隧道势垒的作用。磁场的施加使带具有铁磁性和导电性,从而大大增加了电极之间的电流。我们预测该系统在液氮温度和10 T或液氦温度和300 G时会有较大的磁阻。

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