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首页> 外文期刊>Journal of Physics. Condensed Matter >Modeling of metal-graphene coupling and its influence on transport properties in graphene at the charge neutrality point
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Modeling of metal-graphene coupling and its influence on transport properties in graphene at the charge neutrality point

机译:金属-石墨烯偶联的建模及其对电荷中性点处石墨烯输运性能的影响

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摘要

In this work, the effect of coupling between metallic electrodes and graphene is discussed. We demonstrate that the transport properties of graphene at the charge neutrality point are very sensitive to this coupling. By introducing a model based on two real parameters, namely the real and the imaginary parts of the self-energy which describes the metal-graphene coupling, the obtained results of charge conductivity versus the Fermi energy reproduce well the essential features of experimental data such as the asymmetry between electrons and holes. Additionally, the possible role of scattering processes in the enhancement of the density of states, and thus of the minimum of conductivity, at the charge neutrality point is also discussed. This work is believed to be helpful for further studies of graphene-based devices wherein metallic electrodes may have a major impact on electrical characteristics.
机译:在这项工作中,讨论了金属电极和石墨烯之间的耦合作用。我们证明了石墨烯在电荷中性点的传输特性对此耦合非常敏感。通过引入基于两个真实参数的模型,即描述金属-石墨烯耦合的自能的实部和虚部,所获得的电荷电导率与费米能的结果很好地再现了实验数据的基本特征,例如电子和空穴之间的不对称性。另外,还讨论了散射过程在电荷中性点提高态密度,从而提高电导率的最小值方面的可能作用。认为这项工作有助于进一步研究基于石墨烯的器件,其中金属电极可能会对电特性产生重大影响。

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