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First-principles study of electric field effect and spin-polarization transport properties of zigzag α-2 graphyne nanoribbons

机译:之字形α-2石墨烯纳米带的电场效应和自旋极化输运性质的第一性原理研究

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Combining the density functional theory with the non-equilibrium Green's function, we have investigated the external transverse electric field effect of the electronic structures and spin-polarization transport properties within zigzag alpha-2 graphyne nanoribbons (z alpha-2GYNRs). The external transverse electric field can induce remarkable spin-polarized and half-metallicity behaviors in our system when the electric field is lower than 0.4 V/angstrom with the anti-ferromagnetic state. Particularly, we find that a nonmagnetic semiconductor feature can be obtained when the electric field is larger than 0.5 V/angstrom. Furthermore, analyzing the current-voltage characteristics of the z alpha-2GYNRs device, some interesting phenomena such as the excellent spin filtering and negative differential resistance have been found. Our results indicate that the external transverse electric field is a practical method for band modulation of the alpha-2 graphyne, and the design of spin-resolved devices based on z alpha-2GYNRs can realize multifunctional spin-dependent transport features. Published by AIP Publishing.
机译:结合密度泛函理论和非平衡格林函数,我们研究了锯齿形α-2石墨烯纳米带(zα-2GYNRs)内电子结构的外部横向电场效应和自旋极化传输特性。当电场在反铁磁状态下低于0.4 V /埃时,外部横向电场会在我们的系统中引起明显的自旋极化和半金属行为。特别地,我们发现当电场大于0.5 V /埃时,可以获得非磁性半导体特征。此外,通过分析z alpha-2GYNRs器件的电流-电压特性,发现了一些有趣的现象,例如出色的自旋滤波和负差分电阻。我们的结果表明,外部横向电场是一种实用的方法来调制α-2石墨烯的带,并且基于z alpha-2GYNRs的自旋分辨器件的设计可以实现多功能的自旋依赖性传输特征。由AIP Publishing发布。

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