应变/非应变石墨烯结的传导间隙:方向依赖性

M. Nguyen, V. H. Nguyen, P. Dollfus, H. Viet Nguyen
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引用次数: 2

摘要

虽然应变石墨烯的能带隙保持为零,但由于石墨烯晶格的应变引起的变形导致k空间中狄拉克点的移位可以导致在应变/非应变结中出现数百meV的有限传导隙,应变仅为百分之几。这种传导间隙很大程度上取决于施加应变的方向和输运方向。这里,我们研究它关于这些量的性质。这项工作为进一步开发石墨烯应变结在电子应用中的应用提供了有用的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conduction gap of strained/unstrained graphene junctions: Direction dependence
Though the energy bandgap of strained graphene remains zero, the shift of Dirac points in the k-space due to strain-induced deformation of graphene lattice can lead to the appearance of a finite conduction gap of several hundreds meV in strained/unstrained junctions with a strain of only a few percent. This conduction gap strongly depends on the direction of applied strain and the transport direction. Here, we study its properties with respect to these quantities. This work provides useful information for further exploiting graphene strained junctions in electronic applications.
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