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◆ ACS Photonics2026-02-11· Position and momentum space

Topological Lasing from Thouless Pumping in Bilayer Photonic Crystal

H.C. Nguyen, Dung Xuan Nguyen, H. Chau Nguyen, H. Chau Nguyen, Thibaud Louvet, Emmanuel Drouard, Xavier Letartre, Dario Bercioux, Hai Son Nguyen, Hai Son Nguyen

原始摘要(英文原文)· Original abstract
Topological lasing leverages concepts from topological physics to achieve single-mode light amplification within topological bandgaps, offering robustness against fabrication imperfections. Recent advances in microelectromechanical systems (MEMSs) and phase-change materials (PCMs) at the subwavelength scale promise new avenues for dynamically reconfigurable topological lasers, enabling robust and tunable nanoscale light sources. Here, we numerically demonstrate a dynamically reconfigurable lasing action at telecom wavelengths in a bilayer photonic crystal through the mechanisms of Thouless pumping. By designing two competing periodic potentialsone slowly translating photonic grating atop another stationary onewe observe a transition between a topological pumping regime and conventional mode oscillation. A carefully engineered heterojunction between these phases supports a robust lasing mode that can be dynamically tuned via MEMSs or reversible PCMs. Our work establishes bilayer photonic crystals as a programmable platform for achieving topological light sources, showcasing a potential pathway for merging topological photonics with reconfigurable photonic devices.
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Topological Lasing from Thouless Pumping in Bilayer Photonic Crystal — 科研速览 Science Skim