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Topographic Mapping of the Quantum Hall Liquid Using a Few-Electron Bubble

机译:使用少量电子气泡的量子霍尔液体的地形图

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A scanning probe technique was used to obtain a high-resolution map of the random electrostatic potential inside the quantum Hall liquid. A sharp metal tip, scanned above a semiconductor surface, sensed charges in an embedded two-dimensional (2D) electron gas. Under quantum Hall effect conditions, applying a positive voltage to the tip locally enhanced the 2D electron density and created a "bubble" of electrons in an otherwise unoccupied Landau level. As the tip scanned along the sample surface, the bubble followed underneath. The tip sensed the motions of single electrons entering or leaving the bubble in response to changes in the local 2D electrostatic potential.
机译:使用扫描探针技术获得了量子霍尔液体内部随机静电势的高分辨率图。尖锐的金属尖端在半导体表面上方扫描,可以感应到嵌入的二维(2D)电子气中的电荷。在量子霍尔效应条件下,向尖端施加正电压会局部增强2D电子密度,并以其他方式未占据的Landau能级产生电子“气泡”。当尖端沿样品表面扫描时,气泡紧随其后。尖端响应于局部2D静电势的变化,感应进入或离开气泡的单个电子的运动。

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