Floquet non-Abelian topological insulator and multifold bulk-edge correspondence
ORAL
Abstract
Topological phases characterized by non-Abelian charges are beyond the scope of the paradigmatic tenfold way and have gained increasing attention recently. Here we investigate topological insulators with multiple tangled gaps in Floquet settings and identify uncharted Floquet non-Abelian topological insulators without any static or Abelian analog. We demonstrate that the bulkedge correspondence is multifold and follows the multiplication rule of the quaternion group Q8. The same quaternion charge corresponds to several distinct edge-state configurations that are fully determined by phase-band singularities of the time evolution. In the anomalous non-Abelian phase, edge states appear in all bandgaps despite trivial quaternion charge. Furthermore, we uncover an exotic swap effect—the emergence of interface modes with swapped driving, which is a signature of the non-Abelian dynamics and absent in Floquet Abelian systems. Our work, for the first time, presents Floquet
topological insulators characterized by non-Abelian charges and opens up exciting possibilities for exploring the rich and uncharted territory of nonequilibrium topological phases.
topological insulators characterized by non-Abelian charges and opens up exciting possibilities for exploring the rich and uncharted territory of nonequilibrium topological phases.
* This work is supported by the National Key Research and DevelopmentProgram of China (Grant No. 2022YFA1405800) and the start-up grantof IOP-CAS. T.L. also acknowledges the support from the ProjectFunded by China Postdoctoral Science Foundation (Grant No.2023M733719).
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Publication: Nature Communications 14, 6418 (2023).
Presenters
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Tianyu Li
Institute of Physics Chinese Academy of Sciences
Authors
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Tianyu Li
Institute of Physics Chinese Academy of Sciences
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Haiping Hu
Institute of Physics, Chinese Academy of Sciences