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光子拓扑安德森绝缘体。

Photonic topological Anderson insulators.

机构信息

Institute for Physics, Rostock University, Rostock, Germany.

Physics Department and Solid State Institute, Technion - Israel Institute of Technology, Haifa, Israel.

出版信息

Nature. 2018 Aug;560(7719):461-465. doi: 10.1038/s41586-018-0418-2. Epub 2018 Aug 22.

Abstract

The hallmark property of two-dimensional topological insulators is robustness of quantized electronic transport of charge and energy against disorder in the underlying lattice. That robustness arises from the fact that, in the topological bandgap, such transport can occur only along the edge states, which are immune to backscattering owing to topological protection. However, for sufficiently strong disorder, this bandgap closes and the system as a whole becomes topologically trivial: all states are localized and all transport vanishes in accordance with Anderson localization. The recent suggestion that the reverse transition can occur was therefore surprising. In so-called topological Anderson insulators, it has been predicted that the emergence of protected edge states and quantized transport can be induced, rather than inhibited, by the addition of sufficient disorder to a topologically trivial insulator. Here we report the experimental demonstration of a photonic topological Anderson insulator. Our experiments are carried out in an array of helical evanescently coupled waveguides in a honeycomb geometry with detuned sublattices. Adding on-site disorder in the form of random variations in the refractive index of the waveguides drives the system from a trivial phase into a topological one. This manifestation of topological Anderson insulator physics shows experimentally that disorder can enhance transport rather than arrest it.

摘要

二维拓扑绝缘体的标志特性是,底层晶格中的无序对电荷和能量的量子输运具有鲁棒性。这种鲁棒性源于这样一个事实,即在拓扑带隙中,这种输运只能沿着边缘态发生,而边缘态由于拓扑保护而免受背散射。然而,对于足够强的无序,这个带隙会关闭,整个系统在整体上变得拓扑平庸:所有的状态都是局域的,所有的输运都根据安德森局域化而消失。因此,最近有人提出可以发生相反的转变,这令人惊讶。在所谓的拓扑安德森绝缘体中,人们预测,通过在拓扑平庸绝缘体中添加足够的无序,可以诱导而不是抑制出受保护的边缘态和量子输运。在这里,我们报告了光子拓扑安德森绝缘体的实验演示。我们的实验是在具有失谐子晶格的蜂窝状结构中,通过螺旋渐逝耦合波导阵列进行的。通过在波导的折射率中引入随机变化的局域无序,将系统从平凡相驱动到拓扑相中。这种拓扑安德森绝缘体物理的表现形式实验表明,无序可以增强输运,而不是阻止它。

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