Magno Macon, Hagelberg Frank
Department of Physics and Astronomy, East Tennessee State University, Johnson City, TN, 37614, USA.
J Mol Model. 2018 Jan 8;24(1):35. doi: 10.1007/s00894-017-3568-5.
The transport properties of zigzag graphene nanoribbons (zGNRs) were studied by density functional theory (DFT) in conjunction with Green's function analysis. In particular, spin transport through a zGNR (12,0) device was investigated under the constraint of ferromagnetic coordination of the ribbon edges. Several configurations with two vacant sites in the edge and the bulk region of the zGNR device were derived from this system. For all structures, magnetocurrent ratios (MCRs) were recorded as a function of the bias as well as the amount of strain applied longitudinally to the devices. ZGNR devices with vacancies in the edge regime turn out to exhibit perfect spin-filter activity for well-defined choices of the strain and the bias, carrying completely polarized minority spin currents. In the alternative structure, characterized by vacancies in the bulk regime, spin currents with majority orientation prevail. With respect to both the sign and the size, the MCR is seen to depend sensitively on the device parameters, i.e., the vacancy locations, the bias, and the amount of strain. These results are interpreted in terms of density-of-states distributions, transmission spectra, and transmission operator eigenstates.
通过密度泛函理论(DFT)结合格林函数分析研究了锯齿形石墨烯纳米带(zGNRs)的输运性质。特别地,在纳米带边缘铁磁配位的约束下,研究了通过zGNR(12,0)器件的自旋输运。从该系统中导出了zGNR器件边缘和体区域有两个空位的几种构型。对于所有结构,记录了磁电流比(MCRs)作为偏压以及纵向施加到器件上的应变量的函数。结果表明,对于明确选择的应变和偏压,边缘区域有空位的zGNR器件表现出完美的自旋过滤活性,携带完全极化的少数自旋电流。在以体区域有空位为特征的另一种结构中,多数取向的自旋电流占主导。就符号和大小而言,MCR被认为敏感地依赖于器件参数,即空位位置、偏压和应变量。这些结果根据态密度分布、透射光谱和透射算符本征态进行了解释。