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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Electronic properties of zigzag and armchair graphene nanoribbons in the external electric and magnetic fields
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Electronic properties of zigzag and armchair graphene nanoribbons in the external electric and magnetic fields

机译:Z字形和扶手椅石墨烯纳米的电子特性

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摘要

We explore, numerically, some electronic properties of zigzag and armchair graphene nanoribbons under the external perpendicular magnetic field and transverse electric field. Our results, in the magnetic field only, indicate that numerical Landau levels deviate from the Dirac Landau levels formula for higher levels and quantum Hall conductance curve of armchair nanoribbon shows oscillatory behavior in the high gate voltage. In the presence of transverse electric field only, it is shown that the electric dipole moment of zigzag nanoribbon increases abruptly versus the electric field in the range of low-intensity electric fields while for armchair nanoribbon this varies very slowly. This variation in stronger electric fields is staircase for armchair nanoribbon while it is smoothly for zigzag nanoribbon. In the presence of electric and magnetic fields, there are electrons and holes as charge carrier in the same proportions. Conducting electrons make a round current in the half of nanoribbons while conducting holes make a round current in the other half. Electronic vortices, which are static in the presence of magnetic field only, move along nanoribbons in the effect of the transverse electric field. By considering the curve of electric dipole moment versus the electric field, it is found that magnetic field increases the electric susceptibility of nanoribbons in the low-intensity electric fields substantially and creates considerable electric susceptibilities in several higher electric fields. So these indicate that the magnetic field increases the electric sensitivity of graphene nanoribbons.
机译:我们在数值上探索了外部垂直磁场和横向电场下的Z字形和扶手椅石墨烯纳米的一些电子特性。我们的结果仅在磁场中,表明数值LANDAU水平偏离扶手椅纳米纳米·纳米纳米级较高水平和量子霍尔电导曲线的狄拉普兰普水平公式,显示了高栅极电压中的振荡行为。仅在存在横向电场的情况下,示出了Zigzag纳米布的电偶极力矩随着低强度电场范围内的电场而增加,而对于扶手椅纳米臂,这变化非常缓慢。这种变化更强大的电场是扶手椅纳米架的楼梯,而Z字形纳米波堡顺利。在电磁场的存在下,以相同的比例,存在电子和孔作为电荷载体。导电电子在纳米波堡的一半中进行圆电流,同时导电孔在另一半的圆形电流中产生圆形电流。电子涡流仅在磁场存在下静态,沿横向电场的效果移动。通过考虑电偶极力矩与电场的曲线,发现磁场基本上基本上增加了低强度电场中的纳米杆的电敏感性,并在几个更高的电场中产生相当大的电敏感性。因此,这些表明磁场增加了石墨烯纳米的电敏感性。

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