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Breakdown of Counterflow Superfluidity in a Disordered Quantum Hall Bilayer

机译:无序量子霍尔双层中逆流超流的分解

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We present a theory for the regime of coherent interlayer tunneling in a disordered quantum Hall bilayer at total filling factor one, allowing for the effect of static vortices. We find that the system consists of domains of polarized superfluid phase. Injected currents introduce phase slips between the polarized domains which are pinned by disorder. We present a model of saturated tunneling domains that predicts a critical current for the breakdown of coherent tunneling that is extensive in the systemsize. This theory is supported by numerical results froma disordered phasemodel in two dimensions.We also discuss how our picture might be used to interpret experiments in the counterflow geometry and in two-terminal measurements.
机译:我们提出了一种理论,适用于在总填充因子为1的无序量子霍尔双层中的相干层间隧穿机制,并考虑了静态涡旋的影响。我们发现系统由极化的超流体相的域组成。注入的电流在被无序固定的极化域之间引入相移。我们提出了一个饱和隧穿域模型,该模型预测了系统尺寸中广泛出现的相干隧穿击穿的临界电流。该理论得到二维无序相模型的数值结果的支持。我们还讨论了如何使用我们的图片来解释逆流几何和两末端测量中的实验。

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