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A heuristic quantum theory of the integer quantum Hall effect

机译:整数量子霍尔效应的启发式量子理论

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摘要

Contrary to common belief, the current emitted by a contact embedded in a two-dimensional electron gas (2DEG) is quantized in the presence of electric and magnetic fields. This observation suggests a simple, clearly defined model for the quantum current through a Hall device that does not invoke disorder or interactions as the cause of the integer quantum Hall effect (QHE), but is based on a proper quantization of the classical electron drift motion. The theory yields a quantitative description of the breakdown of the QHE at high current densities that is in agreement with experimental data. Furthermore, several of its key points are in line with recent findings of experiments that address the dependency of the QHE on the 2DEG bias voltage and results that are not easily explained within the framework of conventional QHE models.
机译:与通常的看法相反,在存在电场和磁场的情况下,对嵌入二维电子气(2DEG)中的触点发出的电流进行了量化。该观察结果表明通过霍尔器件的量子电流的简单,明确定义的模型不会将无序或相互作用作为整数量子霍尔效应(QHE)的原因,而是基于经典电子漂移运动的正确量化。该理论给出了在高电流密度下QHE击穿的定量描述,与实验数据一致。此外,它的几个关键点与最近的实验发现一致,这些实验解决了QHE对2DEG偏置电压的依赖性以及在传统QHE模型的框架内不容易解释的结果。

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