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TUNNELING BETWEEN BILAYER QUANTUM HALL STRUCTURES IN A STRONG MAGNETIC FIELD

机译:双层量子霍尔结构在强磁场之间的隧道

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We calculate the tunneling current in a quantum Hall bilayer system in the strong magnetic field limit. We model the bilayer electron system as two Wigner crystals coupled through interlayer Coulomb interactions, treated in the continuum limit. We generalized the Johansson and Kinaret (JK) model and were able to study the effect of the low energy out-of-phase magnetophonon modes produced as a result of tunneling events. We find the same scaling behavior of the tunneling current peak with the magnetic field as found by JK but were able to find the tunneling current scaling behavior with interlayer distance as well.
机译:我们在强磁场极限中计算量子霍尔双层系统中的隧道电流。我们将双层电子系统塑造为通过层间库仑相互作用耦合的两个Wigner电子系统,在连续箱里处理。我们概括了约翰逊和Kinaret(JK)模型,并能够研究由于隧道事件而产生的低能量异室磁芯模式的效果。我们发现隧道电流峰值的相同缩放行为与JK发现的磁场,但能够找到具有层间距离的隧道电流缩放行为。

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