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Transport gap engineering by contact geometry in graphene nanoribbons: Experimental and theoretical studies on artificial materials

机译:石墨烯纳米带中接触几何学的传输间隙工程:人工材料的实验和理论研究

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摘要

Electron transport in small graphene nanoribbons is studied by microwave emulation experiments and tight-binding calculations. In particular, it is investigated under which conditions a transport gap can be observed. Our experiments provide evidence that armchair ribbons of width 3m + 2 with integer m are metallic and otherwise semiconducting, whereas zigzag ribbons are metallic independent of their width. The contact geometry, defining to which atoms at the ribbon edges the source and drain leads are attached, has strong effects on the transport. If leads are attached only to the inner atoms of zigzag edges, broad transport gaps can be observed in all armchair ribbons as well as in rhomboid-shaped zigzag ribbons. All experimental results agree qualitatively with tight-binding calculations using the nonequilibrium Green's function method.
机译:通过微波仿真实验和紧密结合计算研究了石墨烯纳米带中的电子传输。特别地,研究了在哪些条件下可以观察到运输间隙。我们的实验提供了证据,证明宽度为3m + 2(整数m)的扶手椅状带是金属的,否则是半导体的,而之字形带则是金属的,与宽度无关。接触几何形状对源极引线和漏极引线所连接的带状边缘上的哪些原子有影响,这对传输有很大影响。如果仅将铅附着在锯齿形边缘的内部原子上,则在所有扶手椅状带以及菱形锯齿形带中都可以观察到较宽的传输间隙。所有实验结果与使用非平衡格林函数方法的紧束缚计算在质量上都吻合。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第3期|035413.1-035413.7|共7页
  • 作者单位

    Institute de Ciencias Fisicas, Universidad National Autonoma de Mexico, 62210 Cuernavaca, Mexico;

    Institute de Ciencias Fisicas, Universidad National Autonoma de Mexico, 62210 Cuernavaca, Mexico,CONACYT - Instituto de Fisica, Universidad Autonoma de San Luis Potosi, 78290 San Luis Potosi, Mexico;

    Universite Cote d'Azur, CNRS, Institut de Physique de Nice, 06100 Nice, France;

    Universite Cote d'Azur, CNRS, Institut de Physique de Nice, 06100 Nice, France;

    Institute de Ciencias Fisicas, Universidad National Autonoma de Mexico, 62210 Cuernavaca, Mexico,Centro International de Ciencias, 62210 Cuernavaca, Mexico;

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