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Imaging of localized electronic states in the quantum Hall regime

机译:量子霍尔体系中局部电子态的成像

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The concept of electron localization has long been accepted to be essential to the physics of the quantum Hall effect in a two-dimensional electron gas. The exact quantization of the Hall resistance and the zero of the diagonal resistance over a range of filling factors close to integral are attributed to the localization of electronic states at the Fermi level in the interior of the gas. As the electron density is changed, charging of the individual localized states may occur by single-electron jumps, causing associated oscillations in the local electrostatic potential. Here we search for such a manifestation of localized states in the quantum Hall regime, using a scanning electrometer probe. We observe localized potential signals, at numerous locations, that oscillate with changing electron density. In general, the corresponding spatial patterns are complex, but well-defined objects are often seen which evidently arise from individual localized states. These objects interact, and at times form a lattice-like arrangement.
机译:长期以来,电子本地化的概念已被接受,对于二维电子气中量子霍尔效应的物理学必不可少。在接近积分的填充因子范围内,霍尔电阻的精确量化和对角电阻的零归因于气体内部费米能级的电子态定位。随着电子密度的变化,单个局部状态的电荷可能会因单电子跃迁而发生,从而引起局部静电势的相关振荡。在这里,我们使用扫描静电计探针搜索量子霍尔态中的局域态。我们在许多位置观察到局部电位信号,该信号随电子密度的变化而振荡。通常,相应的空间模式很复杂,但是经常看到定义明确的对象,这些对象显然是由各个局部状态引起的。这些物体相互作用,有时形成格子状排列。

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