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Coulomb zero bias anomaly for fractal geometry and conductivity of granular systems near the percolation threshold

机译:在渗流阈值附近的颗粒系统的分形几何和电导率的库仑零偏异常

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摘要

A granular system slightly below the percolation threshold is a collection of finite metallic clusters, characterized by wide spectrum of sizes, resistances, and charging energies. Electrons hop from cluster to clusters via short insulating "links" of high resistance. At low temperatures all clusters are Coulomb blockaded and the dc-conductivity σ- is exponentially suppressed. At lowest T the leading transport mechanism is variable range cotunneling via largest (critical) clusters, leading to the modified Efros-Shklovsky law. At intermediate temperatures the principal suppression of a originates from the Coulomb zero bias anomaly occurring, when electron tunnels between adjacent large clusters with large resistances. Such clusters are essentially extended objects and their internal dynamics should be taken into account. In this regime the T-dependence of σ is stretched exponential with a nontrivial index, expressed through the indices of percolation theory. Due to the fractal structure of large clusters the anomaly is strongly enhanced: it arises not only in low dimensions, but also in d = 3 case.
机译:稍低于渗滤阈值的颗粒系统是有限的金属簇的集合,其特征在于宽范围的尺寸,电阻和充电能。电子通过高电阻的短绝缘“连接”从一个簇跳到另一个簇。在低温下,所有团簇都被库仑阻塞,并且直流电导率σ-被指数抑制。在最低T处,主要的传输机制是通过最大(关键)簇的可变范围联合隧道,从而导致修改后的Efros-Shklovsky定律。在中间温度下,当电子在具有大电阻的相邻大簇之间隧穿时,a的主要抑制作用源自发生的库仑零偏压异常。这样的群集本质上是扩展对象,应考虑其内部动态。在这种情况下,σ的T相关性以非平凡的指数扩展,通过渗滤理论的指数表示。由于大星团的分形结构,异常现象得到了极大的增强:它不仅出现在较小的尺寸上,而且在d = 3的情况下也会出现。

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