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Electronic band gaps and transport properties in graphene superlattices with one-dimensional periodic potentials of square barriers

机译:具有正方形势垒一维周期势的石墨烯超晶格中的电子带隙和输运性质

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摘要

The electronic transport properties and band structures for the graphene-based one-dimensional (ID) super-lattices with periodic potentials of square barriers are investigated; It is found that a new Dirac point is formed, which is exactly located at the energy which corresponds to the zero (volume) averaged wave number inside the ID periodic potentials. The location of such a new Dirac point is robust against variations in the lattice constant, and it is only dependent on the ratio of widths of the potential barriers. The zero-averaged wave-number gap associated with the new Dirac point is insensitive to both the lattice constant and the structural disorder and the defect mode in the zero-averaged wave-number gap is weakly dependent on the incident angles of carriers.
机译:研究了具有周期性势垒的石墨烯基一维(ID)超晶格的电子输运性质和能带结构。发现形成了一个新的狄拉克点,该点恰好位于与ID周期电势内的零(体积)平均波数相对应的能量处。这种新的狄拉克点的位置对于晶格常数的变化具有鲁棒性,并且仅取决于势垒宽度的比率。与新的狄拉克点相关的零平均波数间隙对晶格常数和结构无序均不敏感,并且零平均波数间隙中的缺陷模式弱地取决于载流子的入射角。

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