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Self-similar conductance patterns in graphene Cantor-like structures

机译:石墨烯Cantor样结构中的自相似电导模式

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摘要

Graphene has proven to be an ideal system for exotic transport phenomena. In this work, we report another exotic characteristic of the electron transport in graphene. Namely, we show that the linear-regime conductance can present self-similar patterns with well-defined scaling rules, once the graphene sheet is subjected to Cantor-like nanostructuring. As far as we know the mentioned system is one of the few in which a self-similar structure produces self-similar patterns on a physical property. These patterns are analysed quantitatively, by obtaining the scaling rules that underlie them. It is worth noting that the transport properties are an average of the dispersion channels, which makes the existence of scale factors quite surprising. In addition, that self-similarity be manifested in the conductance opens an excellent opportunity to test this fundamental property experimentally.
机译:石墨烯已被证明是解决奇异传输现象的理想系统。在这项工作中,我们报告了石墨烯中电子传输的另一个奇特特征。即,我们表明,一旦石墨烯片经历了Cantor样的纳米结构化,线性区域电导就可以呈现具有清晰定义的缩放规则的自相似模式。据我们所知,上述系统是少数几个具有自相似结构在物理性质上产生自相似模式的系统之一。通过获取作为其基础的缩放规则,可以对这些模式进行定量分析。值得注意的是,传输特性是分散通道的平均值,这使得比例因子的存在非常令人惊讶。另外,在电导中表现出自相似性为实验测试该基本特性提供了极好的机会。

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