High-dimensional non-Abelian holonomy in integrated photonics
作者:Youlve Chen, Yunru Fan, Gulliver Larsonneur, Jinlong Xiang, An He, Guo-Huai Wang, Xu‐Lin Zhang, Guancong Ma, Qiang Zhou, Guang‐Can Guo, Yikai Su, Xuhan Guo · 发表于:Nature Communications · 年份:2025 · DOI:10.1038/s41467-025-58794-3 · 被引用次数:12 · 研究领域:Neural Networks and Reservoir Computing、Photonic and Optical Devices、Optical Network Technologies
Non-Abelian holonomy is known for the robust holonomic unitary behavior exhibited. The associated non-Abelian geometric phase is a promising approach for implementing topologically protected computation. But its realization in application-abundant platforms has been largely elusive. In particular, the observation of universal high-order matrices is difficult due to challenges from increasing the dimensions of degenerate subspace. Here we realize a high-dimensional non-Abelian holonomic device on an integrated multilayer silicon nitride platform, which is compatible with the complementary-metal-oxide-semiconductor process. High dimensional (up to 6), broadband (> 100 nm operating bandwidth), and ultra-compact volume non-Abelian holonomy unitary matrices of arbitrary special orthogonal group are observed, and M × N linear holonomic computation architecture is experimentally realized through singular value decomposition. Our work provides a paradigm for versatile applications of non-Abelian geometric phase for both classical and quantum realms.