Landau rainbow based on Floquet helical waveguide systems

Rong Zhou, Zhihao Wang, Wenshuo Ma, Wen Zhao, Yongchun Liu, Cuicui Lu*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

A topological rainbow can separate topological photonic states with different frequencies to different spatial localizations. The Landau levels offer significant insights for the study of topological bulk states and inspire the discovery of novel topological states and phenomena. The Landau rainbow, as a typical topological rainbow, in which different frequencies of Landau modes can be separated into different positions, exhibits potential applications for designing broadband photonic devices. In this Letter, we propose a Landau rainbow based on the zero-order Landau level of Floquet helical waveguide systems for the first time to our knowledge. The photonic Landau levels are induced by a pseudo-magnetic field by engineering the gradient effective coupling strength, and the helical configuration of the waveguides breaks the degeneracy of the zero-order Landau levels resulting in band tilting. Therefore, the states in the zero-order Landau level exhibit distinct quasienergies and are located at different spatial positions, which show a Landau rainbow effect. The Landau rainbow based on Floquet helical waveguide systems provides new avenues for the realization of robust photonic devices, such as rainbow trapping device, multifrequency divider, and optical information storage.

源语言英语
页(从-至)3990-3993
页数4
期刊Optics Letters
50
12
DOI
出版状态已出版 - 15 6月 2025
已对外发布

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