弗洛奎特理论
格子(音乐)
物理
拓扑绝缘体
拓扑(电路)
凝聚态物理
量子力学
数学
非线性系统
组合数学
声学
作者
Georgios G. Pyrialakos,Julius Beck,Matthias Heinrich,Lukas J. Maczewsky,Nikolaos V. Kantartzis,Mercedeh Khajavikhan,Alexander Szameit,Demetrios N. Christodoulides
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2022-04-28
卷期号:21 (6): 634-639
被引量:40
标识
DOI:10.1038/s41563-022-01238-w
摘要
Topological theories have established a unique set of rules that govern the transport properties in a wide variety of wave-mechanical settings. In a marked departure from the established approaches that induce Floquet topological phases by specifically tailored discrete coupling protocols or helical lattice motions, we introduce a class of bimorphic Floquet topological insulators that leverage connective chains with periodically modulated on-site potentials to reveal rich topological features in the system. In exploring a 'chain-driven' generalization of the archetypical Floquet honeycomb lattice, we identify a rich phase structure that can host multiple non-trivial topological phases associated simultaneously with both Chern-type and anomalous chiral states. Experiments carried out in photonic waveguide lattices reveal a strongly confined helical edge state that, owing to its origin in bulk flat bands, can be set into motion in a topologically protected fashion, or halted at will, without compromising its adherence to individual lattice sites.
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