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Transport characteristics of multi-terminal pristine and defective phosphorene systems

机译:多末端原始和缺陷磷烯系统的运输特性

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Atomic vacancies and nanopores act as local scattering centers and modify the transport properties of charge carriers in phosphorene nanoribbons (PNRs). We investigate the influence of such atomic defects on the electronic transport of multi-terminal PNR. We use the non-equilibrium Green's function approach within the tight-binding framework to calculate the transmission coefficient and the conductance. Terminals induce band mixing resulting in oscillations in the conductance. In the presence of atomic vacancies and nanopores the conductance between non-axial terminals exhibit constructive scattering, which is in contrast to mono-axial two-terminal systems where the conductance exhibits destructive scattering. This can be understood from the spatial local density of states of the transport modes in the system. Our results provide fundamental insights into the electronic transport in PNR-based multi-terminal systems and into the ability of atomic defects and nanopores through tuning the transport properties.
机译:原子空缺和纳米孔作为局部散射中心,并改变磷烯纳米杆菌(PNRS)中电荷载体的运输性能。我们调查这种原子缺陷对多末端PNR电子传输的影响。我们在紧密绑定框架内使用非平衡绿色的功能方法来计算传动系数和电导。终端诱导带混合导致电导中的振动。在原子空缺的存在和纳米孔之间,非轴向端子之间的电导表现出建设性散射,这与电导呈现散射的单轴双端子系统相反。从系统中的传输模式的状态的空间局部密度可以理解这一点。我们的结果为PNR的多终端系统中的电子传输提供了根本的见解,并通过调整运输性能来实现原子缺陷和纳米孔的能力。

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