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The spin-dependent transport properties of zigzag α-graphyne nanoribbons and new device design

机译:之字形α-石墨烯纳米带的自旋相关输运性质和新器件设计

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摘要

By performing first-principle quantum transport calculations, we studied the electronic and transport properties of zigzag α-graphyne nanoribbons in different magnetic configurations. We designed the device based on zigzag α-graphyne nanoribbon and studied the spin-dependent transport properties, whose current-voltage curves show obvious spin-polarization and conductance plateaus. The interesting transport behaviours can be explained by the transport spectra under different magnetic configurations, which basically depends on the symmetry matching of the electrodes’ bandstructures. Simultaneously, spin Seebeck effect is also found in the device. Thus, according to the transport behaviours, zigzag α-graphyne nanoribbons can be used as a dual spin filter diode, a molecule signal converter and a spin caloritronics device, which indicates that α-graphyne is a promising candidate for the future application in spintronics.
机译:通过执行第一性原理量子传输计算,我们研究了在不同磁性构型下曲折α-石墨烯纳米带的电子和传输性质。我们设计了基于之字形α-石墨烯纳米带的器件,并研究了自旋相关的输运特性,其电流-电压曲线显示出明显的自旋极化和电导平台。有趣的传输行为可以通过不同磁性配置下的传输光谱来解释,这主要取决于电极能带结构的对称匹配。同时,在设备中也发现了自旋塞贝克效应。因此,根据运输行为,之字形α-石墨烯纳米带可用作双自旋滤波器二极管,分子信号转换器和自旋热电子器件,这表明α-石墨烯是自旋电子学未来应用的有希望的候选者。

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