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Origin of the hysteresis in bilayer two-dimensional systems in the quantum Hall regime

机译:量子霍尔系统中双层二维系统中的磁滞的起源

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摘要

The hysteresis observed in the magnetoresistance of bilayer two-dimensional (2D) systems in the quantum Hall regime is generally attributed to the long-time constant for charge transfer between the 2D systems due to the very low conductivity of the quantum Hall bulk states. We report electrometry measurements of a bilayer 2D system that demonstrate that the hysteresis is instead due to nonequilibrium induced current. This finding is consistent with magnetometry and electrometry measurements of single 2D systems and has important ramifications for understanding hysteresis in bilayer 2D systems.
机译:由于量子霍尔体态的电导率非常低,因此在二维霍尔系统中的二维二维(2D)系统的磁阻中观察到的磁滞通常归因于2D系统之间电荷转移的长期常数。我们报告了双层2D系统的静电测量结果,该结果表明,磁滞反而归因于非平衡感应电流。这一发现与单个2D系统的磁力测定和静电测定测量结果一致,并且对于理解双层2D系统中的磁滞具有重要的影响。

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