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Magnetic transport properties of a trigonal graphene sandwiched between graphene nanoribbon electrodes

机译:夹在石墨烯纳米带电极之间的三角石墨烯的磁输运性质

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摘要

Magnetic transport behaviors of a zigzag-edge trigonal graphene (ZTG) constructed as a nanodevice with zigzag graphene nanoribbon (ZGNR) electrodes are investigated, and various magnetic configurations are considered. It is found that excellent magnetic device natures, such as the perfect (100%) spin polarization in a large bias region, spin-resolved rectification ratios approaching 10(5), and the giant magnetoresistance effect up to 10(15)%, can be achieved, which is indeed an extremely high value as compared with previously reported theoretical one, similar to 10(7)%, for complete ZGNR-based magnetic devices and experimental ones, similar to 10(4)%, for the MgO tunnel junction. This can be attributed to unique transmission features due to the strong modulating ability of ZTG for the magnetic transport. These results suggest that the ZTG might possess some advantages in nature for developing magnetic devices. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了构造为带有锯齿形石墨烯纳米带(ZGNR)电极的纳米器件的锯齿形边缘三角石墨烯(ZTG)的磁输运行为,并考虑了各种磁性构型。发现具有优良的磁性器件特性,例如在大的偏置区域具有理想的(100%)自旋极化,自旋分辨整流比接近10(5)以及高达10(15)%的巨磁阻效应,可以与以前报道的理论值相比,对于完整的基于ZGNR的磁性器件而言,它的确是极高的值,与10(7)%相似;对于MgO隧道结,其实验值与10(4)%的实验性器件相比,与之接近。 。归因于ZTG对磁性传输的强大调制能力,这可归因于独特的传输特性。这些结果表明,ZTG在开发磁性设备方面可能具有自然的一些优势。 (C)2015 Elsevier Ltd.保留所有权利。

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