collaborators

5 papers

physics.optics2026

Reconfigurable Momentum-space vectorial lasing enabled by Quasi-BIC

Hongyu Yuan, Zimeng Zeng, Jiayao Liu +4

Bound states in the continuum (BICs) have enabled lasers with rich momentum-space textures. However, the output patterns of quasi-BIC lasers remain largely static and confined to a…

physics.optics2026

Reconfigurable and Recyclable Low-Threshold Quasi-BIC Lasers via a Tunable polymer Coating

Xiaolin Wang, Jiayao Liu, Zimeng Zeng +5

Reconfigurable and sustainable microcavity lasers are highly desirable for next-generation integrated photonics. Here, we report a recyclable, low-threshold quasi-bound state in th…

physics.optics2026

Spatiotemporal Topological Phase Transition in non-Hermitian Photonic System

Zimeng Zeng, Zhuoyang Li, Jiayao Liu +2

While energy band topology in spatial photonic crystals (PCs) and momentum-band topology in temporal crystals have each served as powerful probes of topological phases in their res…

physics.optics2026

Dual Flat-Bands of Bound State in the Continuum and Radiative Mode via TE-TM Coupling

Jiayao Liu, Zimeng Zeng, Zhuoyang Li +2

A general symmetry-controlled mechanism is proposed for realizing dual flat-bands of bound state in the continuum (BIC) and its radiative counterpart in photonic crystal slabs. By…

physics.optics2025

Dynamically Switchable Polarization Lasing between q-BIC and Bragg Resonance Modes

Hongyu Yuan, Jiaoyao Liu, Xiaolin Wang +4

Quasi-bound states in the continuum (q-BICs) enable low-threshold lasing through high-Q cavity modes, yet their polarization tunability remains constrained by nanostructure-imposed…