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Spin-filter and Fano antiresonant effect in conductance through a zigzaglike polymer device: Nonequilibrium Greens function approach

机译:通过锯齿状聚合物器件在电导中的自旋滤波器和Fano反共振效应:非平衡Greens函数方法

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摘要

Electronic transport through a quasi-one-dimensional zigzaglike polymer device is theoretically studied by means of the nonequilibrium Greens function approach. In this system, the main zigzag chain consists of carbon atoms and is attached with side radicals at its next-near-neighbor sites. The results show that a zero point of the linear conductance spectrum occurs due to the Fano antiresonance induced by the electron hoppings between the main chain and the side radicals, which leads to the fact that the linear conductance spectrum displays an insulating band around the antiresonant point. The increase in the polymer size makes both edges of the insulating band to become steep rapidly, which makes the insulating band approach to be a well-defined one. The formation of the dimer along the main chain enhances the insulating band width but much suppresses the electronic transport through the device. Moreover, if the many-body effect due to the electron interaction is taken into account, the antiresonance effect and the well-defined insulating band remain. As a result, a well spin-polarized window appears as the spin splitting occurred by applying an external magnetic field. These results strongly propose that there is a new way for the organic polymer to be applied as a spin-filter.
机译:理论上,通过非平衡格林斯函数方法研究了通过准一维之字形聚合物器件的电子传输。在该系统中,之字形主链由碳原子组成,并在其下一个邻近位置与侧基相连。结果表明,由于主链和侧基之间的电子跳跃引起的Fano反共振,导致线性电导谱出现零点,从而导致线性电导谱在反共振点周围显示一个绝缘带。聚合物尺寸的增加使绝缘带的两个边缘迅速变陡,这使得绝缘带方法成为明确定义的方法。沿着主链的二聚体的形成增加了绝缘带的宽度,但大大抑制了通过器件的电子传输。此外,如果考虑到由于电子相互作用而产生的多体效应,则将保留反共振效应和明确的绝缘带。结果,由于通过施加外部磁场而发生自旋分裂,出现了良好的自旋极化窗口。这些结果有力地表明,存在一种将有机聚合物用作自旋过滤器的新方法。

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