论文标题
关于硅烯收缩的运输特性的几何和电气调制
Geometrical and electrical modulation on the transport property of silicene constrictions
论文作者
论文摘要
我们通过采用紧密结合模型和非平衡绿色功能方法研究了具有不同几何结构的硅烯收缩的传输特性的电气调节。在外部电场和势能的影响下讨论了带结构和传输特性。尤其是,我们研究了中央散射区域的位置和宽度对费米能量增加的电导率的影响。我们发现电导很大程度上取决于位置和宽度。有趣的是,中央区域的对称结构可以引起共振效应,并显着扩大系统的电导。显然,我们获得了一种有效的方法来调整硅杂合物的运输特性。相应地,我们提出了一种新型的两通道结构,与具有相同总宽度的单通道结构相比,在电导率上具有出色的性能。
We study the electrical modulation of the transport properties of silicene constrictions with different geometrical structures by adopting the tight-binding model and non-equilibrium Green's function method. The band structure and transmission properties are discussed under the influence of the external electric field and potential energy. Especially, we investigate the effects of the position and width of the central scattering region on the conductance with increasing of Fermi energy. We find that the conductance significantly depends on the position and the width. Interestingly, the symmetrical structure of the central region can induce a resonance effect and significantly enlarge the system's conductance. Obviously, we obtain an effective method to adjust the transport property of the silicene heterojunctions. Correspondingly, we propose a novel two-channel structure with an excellent performance on the conductance compared to the one-channel structure with the same total width.