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On the role of electron correlation and disorder on persistent currents in isolated one-dimensional rings

机译:电子相关性和无序性对孤立一维环中持续电流的作用

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To understand the role of electron correlation and disorder on persistent currents in isolated 1D rings threaded by magnetic flux Φ, we study the behavior of persistent currents in aperiodic and ordered binary alloy rings. These systems may be regarded as disordered systems with well-defined long-range order so that we do not have to perform any configuration averaging of the physical quantities. We see that in the absence of interaction, disorder suppresses persistent currents by orders of magnitude and also removes its discontinuity as a function of Φ. As we introduce electron correlation, we get enhancement of the currents in certain disordered rings. Quite interestingly we observe that in some cases, electron correlation produces kink-like structures in the persistent current as a function of Φ. This may be considered as anomalous Aharonov-Bohm oscillations of the persistent current and recent experimental observations support such oscillations. We find that the persistent current converges with the size of the rings.
机译:为了了解电子相关性和无序性对磁通量Φ隔离的一维环中持久性电流的作用,我们研究了非周期性和有序二元合金环中持久性电流的行为。这些系统可能被认为是具有明确定义的远程顺序的无序系统,因此我们不必对物理量进行任何配置平均。我们看到,在没有相互作用的情况下,无序将持续电流抑制了几个数量级,并且消除了作为Φ的函数的不连续性。当我们引入电子相关性时,我们会增强某些无序环中的电流。有趣的是,我们观察到在某些情况下,电子相关会在持久电流中产生类似Φ的扭结状结构。这可能被认为是持续电流的异常Aharonov-Bohm振荡,最近的实验观察也支持这种振荡。我们发现持续电流会随着环的大小而收敛。

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