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From the zero-field metal-insulator transition in two dimensions to the quantum Hall transition: A percolation-effective-medium theory - art. no. 073108

机译:从二维零场金属-绝缘体跃迁到量子霍尔跃迁:渗流有效介质理论-艺术。没有。 073108

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摘要

Effective-medium theory is applied to the percolation description of the metal-insulator transition in two dimensions with emphasis on the continuous connection between the zero-magnetic-field transition and the quantum Hall transition. In this model, the system consists of puddles connected via saddle points, and there is loss of quantum coherence inside the puddles. The effective conductance of the network is calculated using appropriate integration over the distribution of conductances, leading to a determination of the magnetic-field dependence of the critical density. Excellent quantitative agreement is obtained with the experimental data, which allows an estimate of the puddle physical parameters. [References: 25]
机译:有效介质理论在二维上用于金属-绝缘体跃迁的渗流描述,着重于零磁场跃迁和量子霍尔跃迁之间的连续连接。在此模型中,系统由通过鞍点连接的水坑组成,并且在水坑内部存在量子相干性损失。使用电导分布上的适当积分来计算网络的有效电导,从而确定临界密度的磁场依赖性。通过实验数据获得了极好的定量一致性,从而可以估算水坑的物理参数。 [参考:25]

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