English

Nearfield Vortex Dynamics of Supercell Bloch Modes

Optics 2026-01-07 v1

Abstract

Densely arranged optical vortices are natural solutions of high-symmetry Bloch modes in photonic crystals. However, strict symmetry constraints limit the potential spatial configurations of nearfield vortices, restricting the control over light-matter interaction. Here, we demonstrate a nearfield vortex dynamic within a supercell photonic crystal. By introducing paired rotations of triangular structures, we achieve high-quality-factor Bloch mode transition from evanescent valley modes, to quasi-bound states in the continuum, frustrated modes, and quasi-valleys. Each stage exhibits distinct nearfield vortex distributions, nonlinear overlap properties, and quality factors, revealing diverse physical behaviors for tailoring light-matter interaction. Notably, the asymmetric vortex configuration of frustrated modes enhances second harmonic generation, driven by an optimized nonlinear overlap factor. Our paired-rotation strategy offers a versatile design framework for creating supercell photonic crystals with unique nearfield vortex properties, presenting promising applications in lasing, nonlinear optics and optical forces.

Keywords

Cite

@article{arxiv.2412.00698,
  title  = {Nearfield Vortex Dynamics of Supercell Bloch Modes},
  author = {Xiaona Ye and Guangfeng Wang and Xiaoyang Duan and Ziwei Wang and Zengya Li and Tongtong Jia and Tingxin Li and Luqi Yuan and Bo Wang and Xianfeng Chen},
  journal= {arXiv preprint arXiv:2412.00698},
  year   = {2026}
}

Comments

30 pages, 17 figures