论文标题

量子桥状状态和准晶体中的副晶体运输

Quantum bridge states and sub-dimensional transports in quasicrystals

论文作者

Jeon, Junmo, Lee, SungBin

论文摘要

异国情调的准晶体图案对诸如临界状态和多纹状体等独特的量子现象引起了很多关注。在这方面,找到新的准周期瓷砖模式和相关的量子状态是准晶体的主要利益之一。在这里,我们专注于通过共存的phason翻转描述的新类型的准晶体,并以不同的局部瓷砖模式讨论了它们的量子传输。事实证明,这种新的瓷砖是从高维晶格的翻译及其投影,尤其是一个四维超同质晶格中唯一的下降。这种非常规的瓷砖产生了形成桥梁,所谓的量子桥状状态的次要限制状态。事实证明,这种状态中的电子可以通过在特定时间施加磁场来强烈定位,但可以随着时间的演变运输到沿着桥梁共享相同局部模式的位点。传输速度通过磁场强度控制,甚至可以期望多个桥之间的电子传输,在这些桥梁之间,它们的数量是由四维超同管晶格的翻译向量确定的。我们的工作铺平了一种发现异常量子状态及其运输的方式,它们独特地存在于具有新的平铺结构的准晶体中。

Exotic tiling patterns of quasicrystals have gotten a lot of attention for unique quantum phenomena such as critical state and multifractality. In this regard, finding new quasi-periodic tiling patterns and the relevant quantum states is one of the main interests in quasicrystals. Here, we focus on new types of quasicrystals described by coexisting phason flips and discuss their quantum transports with distinct local tiling patterns. It turns out that such new tilings are uniquely descended from the translation of high-dimensional lattices and their projection, in particular, a four-dimensional hypercubic lattice. Such unconventional tiling gives rise to sub-dimensionally confined states forming a bridge, so-called quantum bridge states. It turns out that electrons in such states could be strongly localized by applying a magnetic field at a particular time but are transported to the sites which share the same local patterns along the bridge with time evolution. The speed of transport is controlled via magnetic field strength, and one can even expect electron transportation between multiple bridges where their numbers are determined by the translation vectors of a four-dimensional hypercubic lattice. Our work paves a way to discover anomalous quantum states and their transports uniquely present in quasicrystals with new tiling structures.

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