论文标题
klein隧道通过AB BiLayer石墨烯中的三重屏障
Klein tunneling through triple barrier in AB bilayer graphene
论文作者
论文摘要
我们通过三重静电屏障研究了AB双层石墨烯中电荷载体的传输特性。我们使用转移矩阵方法在三重屏障的界面处使用连续性条件来计算传输和反射。首先,我们考虑了能量小于层偶联$γ_1$的情况,并表明,在正常的入射率下,距离在间隙中完全抑制了较大的屏障宽度,而它出现在间隙中,以获得小屏障宽度。对于大于$γ_1$的能量,我们表明,在没有层间电势差的情况下,传输小于单个屏障的传输,但是在存在的情况下,间隙区域的传输被抑制,而不是双重屏障。发现可以根据层间潜在差异的数量来创建一个,两个或三个间隙。观察到在单个和双重屏障案例中未见的$ t _-^+$传输通道中的共振。最后,我们计算电导率,并表明峰值大于双屏障情况。
We investigate the transport properties of charge carriers in AB bilayer graphene through a triple electrostatic barrier. We calculate the transmission and reflection using the continuity conditions at the interfaces of the triple barrier together with the transfer matrix method. First, we consider the case where the energy is less than the interlayer coupling $γ_1$ and show that, at normal incidence, transmission is completely suppressed in the gap for a large barrier width while it appears in the gap for a small barrier width. For energies greater than $γ_1$, we show that in the absence of an interlayer potential difference, transmission is less than that of a single barrier, but in its presence, transmission in the gap region is suppressed, as opposed to a double barrier. It is found that one, two, or three gaps can be created depending on the number of interlayer potential differences applied. Resonance in the $T_-^+$ transmission channel is observed that is not seen in the single and double barrier cases. Finally, we compute the conductance and show that the number of peaks is greater than the double barrier case.