Construction of Bound States in the Continuum in Evanescent Field for On‐Chip Diffraction Engineering

栅栏 光子学 衍射 物理 消散波 光学 衍射光栅 桥接(联网) 辐射 硅光子学 电磁感应光栅 导模共振 领域(数学) 计算机科学 光电子学 近场和远场 干扰(通信) 梁(结构) 相干控制 物理光学 光场 严格耦合波分析 束缚态
作者
Weiming Yao,Wanchang Gao,Yang Feng,Yanmei Li,J. K. Li,Jinzhao Wang,Jianan Duan,Feng He,Y. Yao,Jiazhu Duan,Xiangjie Zhao,Yanhan Dong,Yi Zou,Zhixue He Zhixue He,Xiaochuan Xu
出处
期刊:Laser & Photonics Reviews [Wiley]
卷期号:20 (11)
标识
DOI:10.1002/lpor.202502666
摘要

ABSTRACT Recent advancements in silicon photonics have enabled the integration of diverse optical devices. However, efficiently bridging guided modes with free‐space radiation remains challenging, as current grating solutions often necessitate intricate 3D structures to enable subtle and independent control of radiation channels in multiple directions. Bound States in the Continuum (BIC) offer a promising solution due to their ability to remain localized within the radiation continuum. In this work, we propose and experimentally demonstrate, for the first time, a method that harnesses quasi‐BIC (qBIC) in the evanescent field to build a toolset for guided‐radiation interface, enabling controlled switching of radiation channels. To validate the method's capabilities, we implement it in a grating structure and showcase its potential through a 128‐channel optical phased array (OPA), which achieves enhanced diffraction control and improved far‐field beam quality. The proposed method significantly improves upon traditional grating technologies, offering a promising approach for advanced photonic integration.
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