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Visualizing the connection between edge states and the mobility edge in adiabatic and nonadiabatic topological charge transport

机译:在绝热和非等压电荷运输中可视化边缘状态与移动边缘之间的连接

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摘要

The ability to pump quantized amounts of charge is one of the hallmarks of topological materials. An archetypical example is Laughlin's gauge argument for transporting an integer number of electrons between the edges of a quantum Hall cylinder upon insertion of a magnetic flux quantum. This is mathematically equivalent to the equally famous suggestion of Thouless that an integer number of electrons is pumped between two ends of a one-dimensional quantum wire upon sliding a charge-density wave over a single wavelength. We use the correspondence between these descriptions to visualize the detailed dynamics of the electron flow during a single pumping cycle, which is difficult to do directly in the quantum Hall setup because of the gauge freedom inherent in its description. We find a close correspondence between topological edge states and the mobility edges in charge-density wave, quantum Hall, and other topological systems. We illustrate this connection by describing an alternative, nonadiabatic mode of topological transport that displaces precisely the opposite amount of charge compared to the adiabatic pump. We discuss possible experimental realizations in the context of ultracold atoms and photonic waveguide experiments.
机译:泵量化充电量的能力是拓扑材料的标志之一。一个原型示例是Laughlin的仪表,用于在插入磁通量时在量子霍尔圆筒的边缘之间运输整数电子数。这是在数学上等同于在单个波长上滑动电荷密度波在一维量子导线的两端之间泵送整数电子数的同等着名的电子建议。我们使用这些描述之间的对应关系来可视化单个泵送循环期间电子流的详细动态,这难以直接在量子霍尔设置中直接执行,因为所描述的仪表自由度固有。我们在拓扑边缘状态和电荷密度波,量子厅和其他拓扑系统中的移动性边缘之间找到密钥。通过描述与绝热泵相比,通过描述替代的拓扑输送方式,通过描述替代的拓扑传输模式,该拓扑输送方式正如绝热泵对相反的电荷取代。我们在超薄原子和光子波导实验的背景下讨论可能的实验性实现。

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  • 来源
    《Physical review, B》 |2019年第11期|共7页
  • 作者单位

    Univ Utrecht Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Amsterdam Inst Phys Sci Pk 904 NL-1098 XH Amsterdam Netherlands;

    Univ Utrecht Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Amsterdam Inst Theoret Phys Amsterdam Sci Pk 904 NL-1098 XH Amsterdam Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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