collaborators

5 papers

physics.optics2026

Emerging Multidimensional Real-Space Topological Structures at Chiral Bound States in the Continuum

Xingqi Zhao, Jingguang Chen, Jiajun Wang +6

As widely studied topological singularities, bound states in the continuum (BICs) have revealed rich physical properties through their momentum-space topology. Here, we reveal and…

physics.optics2026

Twisted multilayer moiré water waves topologically robust to disorder

Zhiyuan Che, Julian Schwab, Yi Zhang +6

Moiré patterns, stacking and twisting multilayer periodic lattices into superlattices, have become cornerstones of many physical systems from condensed matter to wave phenomena, b…

physics.optics2025

Quasi-bound flat bands in the continuum

Haoyu Qin, Weixuan Zhang, Shaohu Chen +6

Bound states in the continuum (BICs) are widely known spatially localized states experimentally implemented as quasi-BICs. Although they emerged as a promising solution for achievi…

physics.optics2025

Vectorial microlasers with designable topological charges based on Möbius-like correspondence in quasi-BICs

Xinhao Wang, Zhaochen Wu, Jiajun Wang +2

The ability to control topological properties of laser emission represents a fundamental advancement in photonic technology. Achieving topological laser in a single compact photoni…

physics.optics2025

Meron Spin Textures in Momentum Space Spawning from Bound States in the Continuum

Lixi Rao, Jiajun Wang, Xinhao Wang +7

Topological spin textures, such as merons and skyrmions, have shown significance in both fundamental science and practical applications across diverse physical systems. The optical…